Dental – Dev https://dev.additiveplus.com Thu, 16 Oct 2025 12:14:39 +0000 en-US hourly 1 https://wordpress.org/?v=6.8.5 https://dev.additiveplus.com/wp-content/uploads/cropped-AdditivePlus-Logo-Vertical-Dark-32x32.png Dental – Dev https://dev.additiveplus.com 32 32 shopengine_activated_templates a:1:{s:6:"single";a:1:{s:4:"lang";a:1:{s:2:"en";a:1:{i:7;a:3:{s:11:"template_id";i:53939;s:6:"status";b:1;s:11:"category_id";s:3:"912";}}}}} Revox X1 3D printer https://dev.additiveplus.com/product/revox-x1-3d-printer/ Wed, 23 Apr 2025 11:19:03 +0000 https://dev.additiveplus.com/?post_type=product&p=62743 The first and only DLP
printer with TruLayer Technology

 

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PrintSpeed

TruLayer Technology
Feature Description:

Axtra3D’s uniquely developed and patented TruLayer Technology is on-board every Revox X1 printer. The TruLayer technology offers distinct advantages:

  • Rapid detachment of the active print layer from the vat membrane
  • No limitations to the cross-sections being printed, including large and bulky cross-sections
  • Non-degenerative vat membrane
  • Ability to print highly viscous resins

Industry Leading Print Speed

Revox X1 offers the latest in 4K DLP technology delivering high energy density and pixel shifting technology. This coupled with the TruLayer Technology offers the fastest print speed on the market while still providing best-in-class feature details and good surface quality.

Built with users in mind

Revox X1 was designed to provide its users with an intuitive, seamless and enjoyable experience, from the red anodized finish denoting user touch points to the eye level 10” touchscreen operation. The machine was designed to protect your company’s intellectual property by using opaque doors and not requiring a cloud connection. User safety is a top priority, so features like in chamber ventilation, magnetic interlock system, and a highly visible emergency stop button are included in the Revox X1.

The Revox X1 uses high-end opto-electronics with top of the line mechatronics to produce a highly reliable and repeatable print process.

Built to Process the Widest Range of Materials

The Revox X1 is offered both in open and closed material configurations, offering our customers the highest level of freedom. Designed to handle today’s best materials along with tomorrow’s possibilities, Revox X1 is capable of processing both filled and unfilled resins with a wide range of viscosities. As more 3D printing materials become available, the Revox X1 is well positioned to offer access to the widest variety of these “future” materials.
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3D Printed Parts on The Revox X1 3D Printer

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Dental Model

49 mins

4 Parts Printing Time

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Mold detail

143 mins

12 Parts Printing Time

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Mold component

49 mins

6 Parts Printing Time

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Bracket detail

254 mins

4 Parts Printing Time

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InssTek MX-Med https://dev.additiveplus.com/product/insstek-mx-med/ Mon, 27 Jan 2025 13:34:53 +0000 https://dev.additiveplus.com/?post_type=product&p=59733 Porous coating system.

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Introducing MX-Lab System. Alloy & Metallurgy Research DED machine. Metallurgical Research system, fabricating your New Alloys.

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  • Titanium porous structure application
  • Developed to apply for orthopedic implant surface coating
  • Used for artificial hip joint(FDA approved) & knee coating

Creating Innovative Solutions for Challenges in Medical Industries

  • Porous coating
  • Special Optic Module
  • Coating AM CAM 
  • 5-Axis Control

IDEAL POROSITY: Surface roughness ensured with porosity higher than 60% and ideal porosity(Pore size : 100~400um) that strengthens interfacial bonding between coating layer and substrate as well as biological fixation with bones.
SUPERIOR CUSTOMIZATION: Entirely customizable for cups, knees, shoulders, ankles and more as needed.
USER FRIENDLY INTERFACE: Simple coating procedure with easy step and easy controllable pore shape, thickness, roughness.
ECONOMICAL ADVANTAGE: Cost effective compared with the conventional method and rapid fabrication.
OPTIMIZED PRINTING HEAD: Minimized printing head to avoid the interference with the objects and optimized coating parameters.
COMPLEX PARTS PRODUCTION: Simultaneous 5-axis motion for porous coating.

dmt technology

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The most precise DED Technology.

DMT® is Direct Metal Tooling, developed by InssTek and categorized as Direct Energy Disposition(DED) technology according to ASTM standards. Using 2 vision cameras, DMT technology analyzes and controls the height of the meltpool in real-time.

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Artificial joint coating

InssTek’s MPC technology is able to coat pure titanium on various metals.
In case of artificial joint, Hip system is made with Ti-6AI-4V and knee systems are made with CoCr. InsTek successfully made Ti porous layer on both Ti-6AI-4V and CoCr products.

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Strong Interfacial Bonding between Coating & Base

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Stem Component Hip System

Base Material: Ti-6Al-4V Coating Material: Pure Ti

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Cup Component Hip System

Base Material: Ti-6Al-4V Coating Material: Pure Ti

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Tibial Component Knee System

Base Material: CoCr Coating Material: Pure Ti

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Femoral Component Knee System

Base Material: CoCr Coating Material: Pure Ti

Applicable Material for DMT

The table shows just the metals already printed with our technology so far. Almost every week a new metal is added to our experience.

Fe-based Alloys

P20, P21, H13, SS304L, SS316L, SS420, 2507

Ti-based Alloys

Ti(Grade 2), Ti6-Al-4V(Grade5, Grade23)

Ni-based Alloys

Inconel600, 625, 690, 713, 718, Hastelloy22, 276, Nimonic75, Invar36

Co-based Alloys

CoCr, Stellite6, Stellite21, Stellite25

Cu-based Alloys

Al-Bronze, Cu-Sn

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A100 Metal DMLS 3D Printer for Sale – Explore the Best Metal Printers https://dev.additiveplus.com/product/a100-metal-3d-printer/ Fri, 20 Sep 2024 13:41:30 +0000 https://dev.additiveplus.com/?post_type=product&p=55271 A compact LPBF system with one 300-watt laser ideal for R&D issues.

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The price is for the model with a 300 W laser. A model with a 500 W and 1000 W laser is optionally available.

Introducing A100 Metal 3D Printer with Ø100×100 mm Build Platform

The A100 Metal 3D Printer is a fast and affordable 3D laser printer designed for precise metal parts production. With its versatile build volume, it accommodates a wide variety of part sizes, making it ideal for both small and medium-sized applications. The A100 offers enhanced material versatility, processing a broad range of metals to meet the needs of complex designs, unique products, and small batch production.

This robust and modular system is composed of standard industrial components, ensuring reliability and compatibility with lab environments. It’s compact enough to fit through any door and can be easily transported using a conventional elevator. The A100 is equipped with an optional multi-laser system—a powerful 500W or 1000W laser at 1064 nm and an innovative 250W blue laser at 445 nm. The blue laser delivers finer details and smoother surface finishes, making it perfect for demanding applications.

With a 900°C platform temperature, the A100 can print with hard-melting alloys, offering increased flexibility for advanced applications. Ideal for R&D and innovation, this printer accelerates design iterations, material testing, alloy development, and process optimization, driving faster time-to-market for new products.

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A100 Metal 3d Printer System Advantages

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Blue Laser Technology

The A100 is the first industrial 3D printer to feature a blue laser through a scanhead, providing greater precision and efficiency, especially for hard-to-print, high-reflective alloys.

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Powerful 300W Fiber Laser

Equipped with a robust 300W fiber laser, the printer delivers high-quality metal prints with exceptional precision, making it ideal for industrial applications.

3-10

Multi-Laser System

Includes an optional laser system (500W/1000W 1064 nm + 250W 445 nm) for printing with high-reflective and hard-melting materials, expanding its material compatibility.

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Quick Material Change

Material changes can be made in under 3 hours, minimizing downtime and maximizing productivity during high-demand production cycles.

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High-Temperature Platform

An optional platform with up to 900°C capability enables the printing of hard-melting materials like tungsten, tantalum, and molybdenum, expanding material possibilities.

6-6

Inert Gas Protection

The use of argon gas ensures that materials remain uncontaminated, preventing oxidation and ensuring high-quality, durable metal parts.

7-4

Wide Material Compatibility

Supports a variety of metals including 316L, Ti6Al4V, IN718, AlSi10Mg, pure copper, and more, providing flexibility for industries like aerospace, automotive, medical, and energy.

8-4

Enhanced Productivity

The printer’s quick maintenance setup and low downtime ensure continuous printing, enabling faster design iterations and reducing overall production time.

9-2

Cost-Effective Operation

The A100 reduces material waste and offers access to industrial-grade metal printing technology at a competitive price, making it a cost-efficient solution for prototyping and production.

MATERIALS and applications

Refractory Alloys

Refractory metals, known for their high melting points, are crucial for high-temperature applications like combustion chambers and nozzles. Metal 3D printers offer a precise solution for printing these metals, with options like laser metal printers and large metal 3D printers. These technologies enable the creation of complex, durable components that can withstand extreme heat. Whether you’re searching for a metal 3D printer for sale or a 3D printer that prints metal, advanced machines like 3D aluminum printers provide exceptional performance for demanding industries.

Stainless Steel

Additive manufacturing widely utilizes steel, a robust and durable metal, perfect for high-performance applications. Known for its exceptional wear resistance, steel is ideal for creating components exposed to harsh conditions and frequent use. Whether you need steel for 3D printing metal parts or to manufacture custom components, its versatility across various grades and alloys meets specific application demands. With metal 3D printing, manufacturers can create steel parts with precision and strength, providing an efficient solution for industries requiring long-lasting, high-quality materials. Steel’s adaptability makes it a go-to material for diverse additive manufacturing projects.

Ferromagnetic materials

The Fe-Co-V alloy has many important mechanical and magnetic properties. This is due to its chemical structure which is composed of Fe (49%), Cobalt (49%) and Vanadium (2%). Fe-Co-V alloys are used, among other things, for aeronautical industry components, such as generators and electrical transformers.

Titanium

Ti64, a high-strength titanium alloy, is renowned for its excellent strength-to-weight ratio, corrosion resistance, and biocompatibility. These properties make it a popular choice for metal 3D printing, especially in industries like aerospace and medical implants. With metallic 3D printers such as laser metal printers and 3D printers for metal, manufacturers can create precise Ti64 parts with smooth surface finishes, ideal for demanding applications. Whether you’re looking for a DMLS printer for sale, a large metal 3D printer, or a metal 3D printer, Ti64 is a go-to material for high-performance components.

Inconel

Inconel 625 and 718 are nickel-based super alloys with exceptional mechanical properties, corrosion resistance, and biocompatibility, making them popular in aerospace, oil and gas, chemical processing, and medical industries.

Cobalt Chrome

CoCr, or Cobalt Chrome, is a highly versatile alloy with exceptional strength, durability, and corrosion resistance. It is a preferred choice in various industries, including medical and dental devices, aerospace, and industrial applications.

Aluminum

Aluminum’s lightweight nature, combined with its robust strength and excellent corrosion resistance, makes it a top choice for additive manufacturing. The material’s malleability allows for the creation of intricate shapes with ease, while its superior thermal conductivity ensures rapid and uniform heating of components. Whether you’re using a metal 3D printer, a 3D aluminum printer, or a laser metal printer, aluminum is ideal for producing high-performance parts with precision. Additive manufacturing applications benefit from aluminum’s versatile properties, making it an excellent option for industries requiring durable and efficient components.

Nickel–titanium based alloy

Advanced 3D printing techniques, such as Selective Laser Melting (SLM), enable the production of complex, patient-specific implants from Shape Memory Alloys (SMAs) like NiTi. These materials, ideal for minimally invasive surgical approaches in oral and maxillofacial surgery, are precisely manufactured using metal 3D printers like laser metal printers or metallic 3D printers. Whether you need a DMLS printer for sale or a 3D printer that prints metal for sale, this technology provides custom solutions for creating high-performance osteosynthesis materials.

Magnesium

Magnesium alloys are a promising new class of degradable biomaterials that have a similar stiffness to bone, which minimizes the harmful effects of stress shielding. Use of biodegradable magnesium implants eliminates the need for a second surgery for repair or removal.

Copper AO Metal

The successful results of printing Pure Copper with a blue laser and setup parameter for common alloys.

Solution for the faster R&D workflow:

Ultrasonic metal atomizer & A100 LPBF 3D printer

ATO LAB Plus is a unique compact machine for metal powders production using the latest ultrasonic atomization technology. A100 Metal is a compact desktop LPBF 3D Printer for metal parts production. Powder ready to use in printer.

Speeding up new alloys development and process parametrization. Internal developments in the laboratory and for teaching students. Full production cycle from in-house powder production to 3D printing of the finished product.

+CAMSIZER X2

The CAMSIZER X2 is a powerful, extremely versatile particle size and shape analyzer with a wide measuring range that combines state-of-the-art camera technology with flexible dispersion options. Based on the principle of Dynamic Image Analysis (ISO 13322-2), the CAMSIZER X2 provides precise particle size and shape information of powders, granules, and suspensions in a measuring range from 0.8 μm to 8 mm. 

News_Additive-Plus-1800-x-1151-пикс.-11

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A50 Metal 3D Printer – High Precision & Durability https://dev.additiveplus.com/product/a50-metal-3d-printer/ Fri, 20 Sep 2024 12:18:48 +0000 https://dev.additiveplus.com/?post_type=product&p=55229 A compact LPBF system with 1x300W laser for small series metal production.

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The price is for the model with a 300 W laser. A model with a 500 W and 1000 W laser is optionally available.

Introducing A50 Metal 3D Printer with a compact build envelope. Ideal for R&D lab issues.

The A50 DMLS 3D Printer is a 3D laser printer for all printable metal materials, making it indispensable for creating elaborate forms, complex designs, and unique products or small series of metal parts. Built with robust and modular components, it’s designed to fit in any lab, pass through standard doors, and be used in conventional elevators.

Equipped with an optional multi-laser system, the A50 Metal DMLS 3D Printer features a powerful 500W (or 1000W) laser at 1064 nm and a cutting-edge 250W blue laser at 445 nm. The blue laser ensures finer details and smoother surface finishes, making it perfect for demanding applications.

With a 900°C platform temperature variation system, the A50 DMLS 3D Printer can handle hard-melting alloys, offering greater versatility for advanced metal 3D printing.

a50-3
1-12

Blue Laser Technology

The 450 nm blue laser helps achieve optimal energy absorption and efficient melting for metal materials. The shorter wavelength maximizes precision, enhances speed, and preserves material integrity—perfect for high-demand applications.

2-12

Fast and Efficient Production

The AO Metal 3D Printer is engineered for rapid production cycles and is ideal for both prototyping and on-demand manufacturing, saving you time and energy.

3-10

Cost Efficiency

AO Metal 3D Printers reduce material waste compared to traditional methods, which leads to lower production costs and more sustainable use of resources.

4-11

Complex Geometries and Customization

Effortlessly produce intricate, complex designs and support tailored, customized production. Ideal for creating unique, one-off items or small-batch production runs, enhancing product differentiation.

5-7

Lightweight Structures

Produce lightweight yet robust components. This is particularly beneficial for the automotive and aerospace sectors, where weight reduction is critical for performance.

6-6

Sustainability

Significantly reduce waste and energy consumption compared to traditional manufacturing processes, supporting environmentally conscious production.

7-4

Integration of Functions

Combine multiple parts into a single piece, simplifying assembly and reducing potential failure points, enhancing product reliability and durability.

8-4

Material Versatility

Supports various metal materials, allowing users to select the best option for their specific applications, from high-strength alloys to lightweight metals.

9-2

Enhanced Collaboration

Foster efficient teamwork between designers and engineers, allowing for quick adjustments and seamless modifications based on feedback.

MATERIALS and applications

Stainless Steel

Additive manufacturing extensively utilizes steel, a robust and long-lasting metal ideal for creating durable components. Known for its exceptional wear resistance, steel is perfect for metal parts that endure severe conditions and frequent usage. With a wide variety of steel alloys and grades, additive manufacturing can tailor solutions to meet specific application demands, making it a versatile material choice for a range of industries.

Refractory Alloys

Refractory metals are known for their high melting points, making them perfect for high-temperature applications in industries like aerospace and automotive. These metals are crucial for metal components exposed to extreme conditions, such as combustion chambers, nozzles, and re-entry vehicles, where they must maintain strength and integrity. Leveraging metal 3D printers or additive manufacturing, these metals can be precisely crafted to meet the demands of challenging environments.

Ferromagnetic materials

The Fe-Co-V alloy combines iron (Fe), cobalt (Co), and vanadium (V) to offer exceptional mechanical and magnetic properties, making it ideal for high-performance applications. With a composition of 49% Fe, 49% Co, and 2% V, this alloy is widely used in the aerospace industry for components like generators, electrical transformers, and other critical systems requiring superior strength and magnetism. Metal 3D printing technologies can be employed to manufacture precision parts from Fe-Co-V alloys for demanding industrial applications.

Titanium

Ti64, a titanium alloy, is highly valued for its exceptional strength-to-weight ratio, corrosion resistance, and biocompatibility. Widely used in aerospace and medical implants, Ti64 is ideal for producing precise parts with smooth surface finishes. This alloy is perfect for applications where high performance and durability are critical, making it a popular choice for metal 3D printing in industries requiring precision and reliability.

Inconel

Inconel 625 and 718 are nickel-based super alloys with exceptional mechanical properties, corrosion resistance, and biocompatibility, making them popular in aerospace, oil and gas, chemical processing, and medical industries.

Cobalt Chrome

CoCr, or Cobalt Chrome, is a highly versatile alloy with exceptional strength, durability, and corrosion resistance. It is a preferred choice in various industries, including medical and dental devices, aerospace, and industrial applications.

Aluminum

Additive manufacturing applications benefit from aluminum’s lightweight nature, as well as its robust strength and corrosion resistance. The material’s malleability allows for the creation of intricate shapes with ease, while its superior thermal conductivity ensures rapid and uniform heating of components. Overall, aluminum is an excellent option for additive manufacturing purposes.

Tungsten

Tungsten composites are used in industries ranging from aerospace, automotive, nuclear, defense, medical to leisure.

Examples of applications are: rocket engine nozzles, weapon heads (to penetrate hard surfaces), turbine blades for aircraft (heat-resistant), and smaller tools such as saw blades, drill bits, bearings, pistons, and welding equipment. The medical industry uses pure tungsten for MRI scanning, collimators and radiation shielding.

Nickel–titanium based alloy

Advanced 3D printing techniques, such as selective laser melting (SLM), enable the production of complex, patient-specific implants using Shape Memory Alloys (SMAs). Materials like NiTi osteosynthesis alloys are ideal for creating high-performance implants used in minimally invasive surgeries, particularly in oral and maxillofacial surgery. With the precision of SLM 3D printing, these implants can be custom-designed to meet the unique needs of each patient, offering optimal outcomes in surgical procedures.

Magnesium

Magnesium alloys are a promising new class of degradable biomaterials that have a similar stiffness to bone, which minimizes the harmful effects of stress shielding. Use of biodegradable magnesium implants eliminates the need for a second surgery for repair or removal.

Copper AO Metal

The successful results of printing Pure Copper with a blue laser and setup parameter for common alloys.

Combo solution for the faster R&D workflow:

Ultrasonic metal atomizer & A50 LPBF 3D printer

ATO LAB Plus is a unique compact machine for metal powders production using the latest ultrasonic atomization technology. A100 Metal is a compact desktop LPBF 3D Printer for metal parts production. Powder ready to use in printer.

Speeding up new alloys development and process parametrization. Internal developments in the laboratory and for teaching students. Full production cycle from in-house powder production to 3D printing of the finished product.

+CAMSIZER X2

The CAMSIZER X2 is a powerful, extremely versatile particle size and shape analyzer with a wide measuring range that combines state-of-the-art camera technology with flexible dispersion options. Based on the principle of Dynamic Image Analysis (ISO 13322-2), the CAMSIZER X2 provides precise particle size and shape information of powders, granules, and suspensions in a measuring range from 0.8 μm to 8 mm. 

News_Additive-Plus-rnd-e1741090602775

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A30 Metal 3D Printer – High Precision & Durability https://dev.additiveplus.com/product/a30-metal-3d-printer/ Fri, 20 Sep 2024 08:51:11 +0000 https://dev.additiveplus.com/?post_type=product&p=55131 A compact LPBF system with one 200-watt laser for small series metal production.

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The price is for the model with a 200 W laser.
A model with a 300 W laser is optionally available.

Introducing the A30 Metal 3D Printer: Compact, High-Precision Metal Printing

Ideal solution for R&D lab issues and education.

The A30 Metal 3D Printer is a 3D printer that prints metal for sale, offering a compact build envelope perfect for labs and education. This laser metal printer delivers high-precision metal 3D printing with a range of metallic 3D printer options, making it ideal for complex forms, designs, and small batches of metal parts.

Whether you’re in R&D or education, the A30 Metal 3D Printer is a versatile metal printer 3D solution that fits through any door and works with conventional elevators, offering an affordable 3D aluminum printer for precision manufacturing. It’s an indispensable tool in settings where collaboration and innovation thrive, offering a number 1 metal icon 3D solution for 3D printers for metal applications.

Perfect for creating unique products, the A30 Metal 3D Printer is built to accommodate large metal 3D printer needs while remaining accessible and reliable.

The first desktop model in the product line

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A30 Metal 3d Printer System Advantages

1-12

High-Precision Laser for Detailed Prints

Equipped with a 200W fiber laser, it delivers exceptional precision, ideal for creating small, intricate parts with fine details.

2-12

Quick Material Changes

Switch between metal powders in under an hour, minimizing downtime and ensuring uninterrupted workflows.

3-10

Energy-Efficient Performance

With an energy-efficient design consuming just 2.5 kW, this printer delivers powerful results while reducing energy costs.

4-11

Open Material System for Flexibility

Work with a wide range of metal powders, including aluminum, titanium, and stainless steel, giving you the freedom to choose your materials.

5-7

Outstanding Surface Quality

Achieve professional-grade surface finishes right out of the printer, reducing the need for extensive post-processing.

6-6

Perfect for Prototyping and Small-Scale Production

Effortlessly handles complex designs and geometries, making it ideal for both prototyping and small-batch production.

7-4

Simple Setup and Operation

AO Metal’s user-friendly design allows for quick setup and smooth operation, letting you focus on your work instead of troubleshooting.

8-4

Versatile Build Volume

The Ø30 x 60 mm build size is perfect for creating a variety of small-scale applications, from functional prototypes to intricate designs like gyroids or jewelry.

9-2

Low Maintenance Requirements

Durable and reliable, this printer is designed for minimal maintenance, keeping operational costs and downtime low.

MATERIALS and applications

Stainless Steel

Additive manufacturing widely uses steel 3D printers for metal, a robust and long-lasting metal ideal for creating durable parts. Steel offers outstanding wear resistance, making it perfect for components that endure severe conditions and frequent usage. Available in various grades and alloys, steel is a versatile material used in metal 3D printing to cater to specific application demands across industries. Whether for 3D print metal applications or 3D printer that prints metal, steel is an essential material for metal printers and metallic 3D printer solutions.

Ferromagnetic materials

The Fe-Co-V alloy offers essential mechanical and magnetic properties due to its chemical structure, consisting of Fe (49%), Cobalt (49%), and Vanadium (2%). Used in industries like aerospace, Fe-Co-V alloys are key materials for components such as generators and electrical transformers. This alloy’s durability and precision make it perfect for metal 3D printing with metallic 3D printers, delivering high-performance parts with superior strength. The 3D printer that prints metal ensures efficient production of 3D print metal parts, catering to advanced manufacturing needs in the aerospace sector and beyond.

Titanium

Ti64 is a titanium alloy known for its high strength-to-weight ratio, corrosion resistance, and biocompatibility. Widely used in aerospace and medical implants, Ti64 is ideal for metal 3D printing applications, enabling the production of precise parts with smooth surface finishes. Its properties make it a top choice for 3D printers for metal, offering durable and lightweight components. Whether used in metallic 3D printers or 3D print metal applications, Ti64 ensures superior performance in metal 3D printing across aerospace and medical industries.

Inconel

Inconel 625 and Inconel 718 are nickel-based super alloys known for their exceptional mechanical properties, corrosion resistance, and biocompatibility. These alloys are widely used in metal 3D printing for aerospace, oil and gas, chemical processing, and medical industries. Their outstanding performance makes them ideal for 3D printers for metal, enabling the creation of high-performance parts. Whether in metallic 3D printers or 3D print metal applications, Inconel 625 and 718 offer durable, corrosion-resistant solutions for demanding industrial applications.

Cobalt Chrome

CoCr, or Cobalt Chrome, is a highly versatile alloy known for its exceptional strength, durability, and corrosion resistance. This alloy is a preferred choice for metal 3D printing in industries such as medical and dental devices, aerospace, and industrial applications. With its superior mechanical properties, CoCr is ideal for use in metallic 3D printers and 3D printers for metal, providing reliable solutions for 3D print metal applications in demanding sectors.

Aluminum

Additive manufacturing applications benefit from aluminum’s lightweight nature, robust strength, and corrosion resistance. This material’s malleability makes it ideal for creating intricate shapes with ease, while its superior thermal conductivity ensures rapid and uniform heating of components. As a result, aluminum is a top choice for metal 3D printing, enabling precise, high-performance parts in metallic 3D printers. Whether used in 3D print metal applications or 3D printers for metal, aluminum’s versatility and efficiency make it an excellent option for metal 3D printing in a range of industries.

Tungsten

Tungsten composites are used in industries ranging from aerospace, automotive, nuclear, defense, medical to leisure.

Examples of applications are: rocket engine nozzles, weapon heads (to penetrate hard surfaces), turbine blades for aircraft (heat-resistant), and smaller tools such as saw blades, drill bits, bearings, pistons and welding equipment. The medical industry uses pure tungsten for MRI scanning, collimators and radiation shielding.

Nickel–titanium based alloy

Advanced techniques in 3D printing using the selective laser-melting (SLM) process enable the manufacturing of complex, patient-specific implants from SMAs. Osteosynthesis materials made of NiTi are ideal for minimally invasive surgical approaches, particularly in oral and maxillofacial surgery. This cutting-edge metal 3D printing technology allows for the precise creation of custom implants, enhancing surgical outcomes and offering more efficient solutions in medical applications. 3D printers for metal and metallic 3D printers ensure the high-quality production of these specialized components for advanced healthcare procedures.

Magnesium

Magnesium alloys are a promising new class of degradable biomaterials, offering a stiffness similar to bone that minimizes the harmful effects of stress shielding. Used in metal 3D printing, biodegradable magnesium implants eliminate the need for a second surgery for repair or removal. These alloys are ideal for 3D printers for metal, enabling the production of custom implants with high precision. With their biocompatibility and lightweight nature, metallic 3D printers provide an excellent solution for creating 3D print metal parts, particularly in medical applications where metal 3D printing is essential for creating patient-specific devices.

Combo solution for the faster R&D workflow:

Ultrasonic metal atomizer & A30 LPBF 3D printer.

ATO LAB Plus is a unique compact machine for metal powders production using the latest ultrasonic atomization technology.

A30 Metal is a compact desktop LPBF 3D Printer for metal parts production.
Speeding up new alloys development and process parametrization.
Internal developments in the laboratory and for teaching students.
Full production cycle from in-house powder production to 3D printing of the finished product.

News_Additive-Plus-1800-x-1151-пикс.-10

+CAMSIZER x2

The CAMSIZER X2 is a powerful, extremely versatile particle size and shape analyzer with a wide measuring range that combines state-of-the-art camera technology with flexible dispersion options. Based on the principle of Dynamic Image Analysis (ISO 13322-2), the CAMSIZER X2 provides precise particle size and shape information of powders, granules, and suspensions in a measuring range from 0.8 μm to 8 mm. 

The post A30 Metal 3D Printer – High Precision & Durability appeared first on Dev.

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Kings 6035Pro – Precision SLA 3D Printing for Industrial Use https://dev.additiveplus.com/product/kings-6035pro-sla-3d-printer/ Mon, 25 Dec 2023 13:55:51 +0000 https://dev.additiveplus.com/?post_type=product&p=32376 The powerful machine for industrial creating high-precision and detailed parts

The post Kings 6035Pro – Precision SLA 3D Printing for Industrial Use appeared first on Dev.

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KINGS 3D has been the first 3D printer manufacturer providing 3D printing solutions for the footwear industry, and through sustained efforts and in-depth research, Kings 3D has brought the SLA technology into a wide range of applications in the shoe industry. Kings 6035Pro is tailored for shoe industries. The printing size is 350mm*600mm*350mm, which allows the shoe companies to print a series of shoe models (usually 5 pairs with different sizes) at the same time.

ENHANCED PRINTING EFFICIENCY

  • Intelligent high speed scanning system, 15m/s
  • Variable laser spot and variable power
  • Automatic identifying upskin and downskin with differentiated parameters
  • Different Parameter database with different layer thickness

LONG-TERM PRINTING STABILITY

  • Key components from international top brand: Optowave laser from Us, Scanlab galvanometer from Germany. Full marble structure for enhanced recoating and scanning stability. High stiffness light recoater to ensure recoating accuracy and efficiency. Compensation algorithm for multi-head system, ensuring uniform curing in the printing range.

KINGS 6035 PRO SLA 3D PRINTER ADVANTAGES

DAY-1

THE BEST CHOICE FOR MATERIAL DEVELOPMENT

It is very suitable for the use of the research and development and research of resin materials. The compact large barrel makes the material supplement and convenient.

DAY

CUSTOMIZED SOFTWARE

Kings 3D has developed specialized software for automotive 3D printing, drawing on their extensive experience with SLA 3D printers. They have established reliable parameters for printing auto parts using this technology.

1-2

LONG-TERM PRINTING STABILITY

The Kings 3035Pro incorporates key components from top international brands, ensuring long-term stability in printing performance and minimizing the risk of breakdowns or malfunctions.

3-2

EFFICIENT AND COST-EFFECTIVE PROTOTYPING

The most affordable SLA shoe mold 3D printer, the construction size is 350 mm x 600 mm x 350 mm, respectively. These compact sizes are very suitable for printing shoes, medical, sculpture, toys and jewelry manufacturing industries, as well as small-size models used by scientific research institutions.

4-4

FULL MARBLE STRUCTURE AND HIGH STIFFNESS LIGHT RECOATER

The full marble structure of the Kings 3035Pro provides excellent stability and rigidity, reducing vibrations during the printing process and enhancing accuracy in the final prints.

-без-названия-6

INDUSTRIAL APPLICATIONS

It finds applications in various industries such as equipment manufacturing, aerospace, automobiles, and intelligent manufacturing. Its ability to produce objects with strength comparable to metal makes it a valuable tool for creating functional prototypes and end-use parts. Kings 6035Pro SLA 3D printer offers efficient and cost-effective prototyping solutions. Its advanced features and capabilities make it a powerful tool in the manufacturing industry, enabling fast, cost-effective, and high-quality production. 

INDUSTRIAL APPLICATIONS

SHOE INDUSTRY. KINGS is the first 3D printer manufacturer providing 3D printing solutions for the shoe industry, and below is the application of KINGS SLA 3D printing technology:

KINGS 6035 PRO SLA 3D PRINTER ADVANTAGES FOR SHOE INDUSTRY

Prototype: quickly check the appearance and structure of the design

Casting shoe model: replacing wooden model by CNC machining

Soft shoe model: fitting test to check function and comfort degree

Shoe mould production: for small batch production

Finished shoe sole: Customized shoe development and production

INVESTMENT CASTING. Kings 6035Pro SLA 3D printer offers rapid production of quick casting models, which is capable of producing a high-quality aesthetic finish with tight tolerances. And with KS168C castable resin -that are fully industry-tested, the casting models can be completed in days. The 3D printed casting models are with an internal hexagonal support structure which adds strength to the models, allows for easy drainage, facilitates collapse of the pattern during thermal expansion to help avoid shell cracking, and helps to reduce part volume, weight, and material needed to create a solid part.

QUICK MODEL CASTING ADVANTAGES

Turn-around time. Quick casting models can be printed by Kings 6035Pro in as fast as one or two days, saving a lot of time.

Tolerances. Quick casting models can achieve tolerances +/- 0.1mm; this is not possible with the tooling utilized in traditional investment casting

  • Finish and detail. Quick casting models typically have a cosmetically superior finish to traditional casted parts, and allow for additional detail and geometries that are simply not possible with traditional investment casting

  • Tooling. Quick casting models offer a tool-free, fast, reliable and accurate alternative to models created using tooling, reducing the costs of creating patterns significantly.

RAPID PROTOTYPING. Kings SLA 3D Printer is not only used to make prototype to check the design before mass production, but also use to replace traditional mould in small batch production, personalized customization, and products with complicated structure. Meanwhile, Kings 6035Pro Rapid Prototyping Machine is also used to print prototype for mould to test the function before final production.

  •  

RAPID PROTOTYPING BENEFITS

Fast and effective communication of design ideas

Effective validation of design fit, form, and function

Greater design flexibility, with the ability to run quickly through multiple design iterations

Fewer production design flaws and better end-products. 

FUNCTION OF 3D PRINTER

The function of the 3D printer is to directly create objects of various shapes from computer graphics data without the need for machining or molds. This significantly reduces the production cycle of products and improves productivity. Industrial 3D printers like the Kings 6035Pro are widely used in fields such as equipment manufacturing, aerospace, automobiles, and intelligent manufacturing. This latest generation of 3D printers has achieved groundbreaking speed, reducing costs by half while approaching the strength of metal. These printers excel in batch and large-scale production capabilities.

The post Kings 6035Pro – Precision SLA 3D Printing for Industrial Use appeared first on Dev.

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Kings 3035Pro – Large-Scale Industrial SLA 3D Printer https://dev.additiveplus.com/product/kings-3035pro-sla-3d-printer/ Mon, 25 Dec 2023 12:30:37 +0000 https://dev.additiveplus.com/?post_type=product&p=32356 The high-performance SLA 3D printer for prototypes with strength comparable to metal

The post Kings 3035Pro – Large-Scale Industrial SLA 3D Printer appeared first on Dev.

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The KINGS 3035Pro SLA 3D Printer is a high-performance printer that uses SLA technology to efficiently produce prototypes and parts. It has a large construction size and advanced features for precise and reliable printing. It eliminates the need for machining or molds, improving productivity and design flexibility. The printer can create objects with strength comparable to metal, making it valuable for functional prototypes and end-use parts. 

ENHANCED PRINTING EFFICIENCY

  • Intelligent high speed scanning system, 15m/s
  • Variable laser spot and variable power
  • Automatic identifying upskin and downskin with differentiated parameters
  • Different Parameter database with different layer thickness

LONG-TERM PRINTING STABILITY

Key components from international top brand: Optowave laser from Us, Scanlab galvanometer from Germany. Full marble structure for enhanced recoating and scanning stability. High stiffness light recoater to ensure recoating accuracy and efficiency. Compensation algorithm for multi-head system, ensuring uniform curing in the printing range.

ADVANTAGES OF KINGS 3035 PRO SLA 3D PRINTER

3-2

ENHANCED PRINTING EFFICIENCY

With its high-speed scanning system, adjustable laser spot and power options, automatic parameter identification, and stable and accurate full marble structure, it ensures precise and reliable printing results. Its advanced technology allows for fast production and high-quality output.

4-4

FULL MARBLE STRUCTURE AND HIGH STIFFNESS LIGHT RECOATER

The full marble structure of the Kings 3035Pro provides excellent stability and rigidity, reducing vibrations during the printing process and enhancing accuracy in the final prints.

2-4

LONG-TERM PRINTING STABILITY

The Kings 3035Pro incorporates key components from top international brands, ensuring long-term stability in printing performance and minimizing the risk of breakdowns or malfunctions.

DAY-1

CUSTOM TAILORED

Kings 3D provide a lot of customized options for free. The available upgrades include autofocus, automatic material reinfting, environmental sensor, and remote diagnosis and control to ensure that you prepare for the industry.

1-2

EFFICIENT AND COST-EFFECTIVE PROTOTYPING

Kings 3035Pro SLA 3D printer offers efficient and cost-effective prototyping solutions. Its advanced features and capabilities make it a powerful tool in the manufacturing industry, enabling fast, cost-effective, and high-quality production. The 3D printer eliminates the need for machining or molds, saving time and costs in the production process. It enables direct creation of objects from computer graphics data, streamlining the prototyping process. This not only improves productivity but also allows for more flexibility in design iterations.

-без-названия-6

INDUSTRIAL APPLICATIONS

It finds applications in various industries such as equipment manufacturing, aerospace, automobiles, and intelligent manufacturing. Its ability to produce objects with strength comparable to metal makes it a valuable tool for creating functional prototypes and end-use parts. Kings 3035Pro SLA 3D printer offers efficient and cost-effective prototyping solutions. Its advanced features and capabilities make it a powerful tool in the manufacturing industry, enabling fast, cost-effective, and high-quality production. 


INDUSTRIAL APPLICATIONS

SHOE INDUSTRYKINGS is the first 3D printer manufacturer providing 3D printing solutions for the shoe industry, and below is the application of KINGS SLA 

 

Prototype: quickly check the appearance and structure of the design 

Casting shoe model: replacing wooden model by CNC machining 

Soft shoe model: fitting test to check function and comfort degree 

Shoe mould production: for small batch production 

Finished shoe sole: customized shoe development and production

 

INVESTMENT CASTING. Kings 3035Pro SLA 3D printer offers rapid production of quick casting models, which is capable of producing a high-quality aesthetic finish with tight tolerances. And with KS168C castable resin – that are fully industry-tested, the casting models can be completed in days. The 3D printed casting models are with an internal hexagonal support structure which adds strength to the models, allows for easy drainage, facilitates collapse of the pattern during thermal expansion to help avoid shell cracking, and helps to reduce part volume, weight, and material needed to create a solid part.

QUICK MODELS CASTING ADVANTAGES

Turn-around time. Quick casting models can be printed by Kings 3035Pro in as fast as one or two days, saving a lot of time.

  • Tolerances. Quick casting models can achieve tolerances +/- 0.1mm; this is not possible with the tooling utilized in traditional investment casting

  • Finish and detail. Quick casting models typically have a cosmetically superior finish to traditional casted parts, and allow for additional detail and geometries that are simply not possible with traditional investment casting

  • Tooling. Quick casting models offer a tool-free, fast, reliable and accurate alternative to models created using tooling, reducing the costs of creating patterns significantly.

RAPID PROTOTYPING. Kings SLA 3D Printer is not only used to make prototype to check the design before mass production, but also use to replace traditional mould in small batch production, personalized customization, and products with complicated structure. Meanwhile, Kings 3035Pro Rapid Prototyping Machine is also used to print prototype for mould to test the function before final production.



RAPID PROTOTYPING BENEFITS

Fast and effective communication of design ideas

Effective validation of design fit, form, and function

Greater design flexibility, with the ability to run quickly through multiple design iterations

Fewer production design flaws and better end-products. 

FUNCTION OF 3D PRINTER

The function of the 3D printer is to directly create objects of various shapes from computer graphics data without the need for machining or molds. This significantly reduces the production cycle of products and improves productivity. Industrial 3D printers like the Kings 3035Pro are widely used in fields such as equipment manufacturing, aerospace, automobiles, and intelligent manufacturing. This latest generation of 3D printers has achieved groundbreaking speed, reducing costs by half while approaching the strength of metal. These printers excel in batch and large-scale production capabilities.

The post Kings 3035Pro – Large-Scale Industrial SLA 3D Printer appeared first on Dev.

]]>
Kings 1450Pro – Large-Scale SLA 3D Printing for Industrial Applications https://dev.additiveplus.com/product/kings-1450pro-industrial-sla-3d-printer-2/ Mon, 25 Dec 2023 12:13:50 +0000 https://dev.additiveplus.com/?post_type=product&p=32350 Efficient Industrial SLA 3D Printer. Large Format. Open Platform.

The post Kings 1450Pro – Large-Scale SLA 3D Printing for Industrial Applications appeared first on Dev.

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The Kings 1450Pro utilizes the latest Stereolithography (SLA) technology to create precise and intricate parts with complex designs. This ensures that the printed items are of the highest quality and can meet the specific needs of various industries. KINGS 1450Pro 3D printers are extensively utilized for the development of prototypes, thanks to their customized hardware and software. These printers offer exceptional precision, excellent surface smoothness, and significantly reduce the product development timeline.

IMPROVED PRINTING EFFICIENCY

Advanced high-speed scanning system with a speed of 15m/s

  • Variable beam size (0.075-0.8mm) and power
  • Automatic detection of upskin and downskin layers with customized parameters
  • Multiple parameter database with different layer thickness (0.05mm~0.25mm)

LONG-TERM PRINTING STABILITY

Utilizing top-quality components from renowned international brands, such as the Optowave laser from the US and the Scanlab galvanometer from Germany. Incorporating a full marble structure to enhance stability during recoating and scanning processes. Equipped with a high-stiffness light recoater to ensure accurate and efficient recoating.

ADVANTAGES OF KINGS 1450 PRO SLA 3D PRINTER

2-4

STRENGHT

In contrast to traditional CNC machines, the Kings resin 3D printer stands out with its fast speed, high precision, ability to print large formats, and environmentally friendly features. These advantages result in savings in terms of manpower, financial resources, and time.

DAY

CUSTOMIZED SOFTWARE

Kings 3D has developed specialized software for automotive 3D printing, drawing on their extensive experience with SLA 3D printers. They have established reliable parameters for printing auto parts using this technology.

3-2

FAST SPEED PRINTING

Kings 3D has pioneered variable beam printing and adapted their software to achieve faster printing speeds.

DAY-1

CUSTOM TAILORED

Kings 3D provide a lot of customized options for free. The available upgrades include autofocus, automatic material reinfting, environmental sensor, and remote diagnosis and control to ensure that you prepare for the industry.

4-4

FULL MARBLE STRUCTURE AND HIGH STIFFNESS LIGHT RECOATER

Their SLA 3D printers, featuring optimized full marble structures and customized software parameter packages, demonstrate excellent stability for continuous printing of large projects.

-без-названия-6

INDUSTRIAL APPLICATIONS

The  ability to create objects with comparable strength to metal has made it highly valuable for producing functional prototypes and end-use parts. The Kings 1200Pro SLA 3D printer is an efficient and cost-effective solution for prototyping, it is a powerful tool in the manufacturing industry, enabling fast, affordable, and high-quality production:


INDUSTRIAL APPLICATIONS

ARCHITECTURE. The integration of technology and art in 3D printing has revolutionized the production of sand plates for architectural models. With a scale of 1:120, the 3D printer can accurately reproduce intricate details and create a realistic representation of the building design. This not only saves time in the production process but also allows for easy modifications if needed. The combination of technology and artistry in 3D printing has greatly enhanced the efficiency and quality of sand plate production for architectural models.

5aea752478054

SCULPTURE. With the advent of 3D printing, artists now have the ability to create intricate and complex artworks. The possibilities are only limited by their imagination. Industrial 3D printers are particularly useful for creating art exhibits, especially those with irregular shapes. These printers can produce the entire model in one piece or split it into multiple parts, saving time and reducing the risk of transportation damage.

AUTOMOTIVE. KINGS 850Pro are extensively utilized in the development of automobile prototypes, thanks to their customized hardware and software. These printers offer high precision, exceptional surface smoothness, and significantly reduce the product development process.

LARGE PROTOTYPE. Kings 850Pro Machine is gaining popularity due to the growing trend of larger 3D printing prototypes. With its large printing format, the Kings 850Pro can produce large-scale prototypes in one piece. Kings 3D is the first company in China to develop an SLA 3D printer with a printing volume of 850*850*500mm. The Kings 850Pro stands out from other brands due to its fast printing speed and long-term printing stability.

SHOES. KINGS is a renowned manufacturer of 3D printers that specializes in providing efficient solutions for mass producing shoe models. With their cutting-edge technology, KINGS has revolutionized the process of making shoe models by reducing the time required to modify 3D files for printing by 5 hours.

5aea6ee266536-1

Shoe prototype: quickly checking the shoe design

3D printing is shaping new possibilities in footwear engineering, enabling footwear companies to create shoe models with clear lines, sharp edges and corners and also address the growing demand for customization.

Soft shoe model for fitting test

With KS198S rubber like resin, the 3D Printed shoe model can be used for checking design, and can also be tried on for fitting test.

Casting shoe model: replacing wooden model

The use of 3D printed shoe molds can effectively replace the CNC-engraved wooden molds and perform sand casting, and the molds made have finer textures and patterns.

3D printed models for quick mold:

The 3D printed mold skips the casting process and directly uses it for the production of PU shoe soles. It can be used for plastic injection, PU and cold-pressed insole molds. It is temporarily not suitable for hot-pressed rubber, molded EVA and injection EVA.

Direct printing of finished shoe soles

In the future, everyone can tailor their own shoe with 3D printing. It is more in line with the personal size, and at the same time can achieve a lighter and more comfortable sole structure.

MEDICINE. Each medical facility should have access to the latest tools in order to enhance patient care and provide the best possible experience. 3D printing technology offers personalized solutions in healthcare by improving workflow efficiency, enabling faster surgeries, enhancing identification and visualization, and providing innovative options for patients.


KEY FEATURES OF SLA 3D PRINTER FOR MEDICINE:

 

1. Customized Component Production: 3D printing allows for the production of small batches or even individual parts without any additional costs or the need for extra time or tools.

2. Complex Geometric Shapes: Medical SLA 3D printers can easily produce intricate shapes using a variety of materials, including plastics and metals. This capability is especially useful in highly customized applications.

3. One-Piece Molding and High Accuracy: The ability to create objects in a single piece improves design efficiency, reduces costs, and shortens production time.

4. Gap Elimination: 3D printing eliminates the gaps between multiple components, making it easier to disinfect equipment and reducing the potential for bacterial growth.

5. Time and Cost Savings: By utilizing 3D scanning and X-ray technologies, medical professionals can quickly create detailed 3D models, saving both time and costs associated with traditional methods.

FUNCTION OF 3D PRINTER

 

Industrial 3D printers can produce items by directly receiving digital data from CAD files, eliminating the need for machining or molds, which significantly reduces production cycles and increases productivity. The rapid progress in 3D printing technology over the past 10 years has made it one of the dominant technologies in the industry. Today, industrial 3D printers are well-suited for producing individual parts and for small to medium-scale production.

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The post Kings 1450Pro – Large-Scale SLA 3D Printing for Industrial Applications appeared first on Dev.

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Kings 1200Pro – Large-Format SLA 3D Printer for Industrial Use https://dev.additiveplus.com/product/kings-1200pro-industrial-sla-3d-printer-2/ Mon, 25 Dec 2023 11:33:24 +0000 https://dev.additiveplus.com/?post_type=product&p=32339 The industrial 3D SLA printer is an efficient and cost-effective solution for prototyping.

The post Kings 1200Pro – Large-Format SLA 3D Printer for Industrial Use appeared first on Dev.

]]>

The Kings 1200Pro utilizes the latest Stereolithography (SLA) technology to create precise and intricate parts with complex designs. This ensures that the printed items are of the highest quality and can meet the specific needs of various industries. KINGS 1200Pro 3D printers are extensively utilized for the development of prototypes, thanks to their customized hardware and software. These printers offer exceptional precision, excellent surface smoothness, and significantly reduce the product development timeline.

ADVANTAGES OF KINGS 1200 PRO SLA 3D PRINTER

IMPROVED PRINTING EFFICIENCY

Advanced high-speed scanning system with a speed of 15m/s

  • Variable beam size (0.075-0.8mm) and power
  • Automatic detection of upskin and downskin layers with customized parameters
  • Multiple parameter database with different layer thickness (0.05mm~0.25mm)

LONG-TERM PRINTING STABILITY

Utilizing top-quality components from renowned international brands, such as the Optowave laser from the US and the Scanlab galvanometer from Germany. Incorporating a full marble structure to enhance stability during recoating and scanning processes. Equipped with a high-stiffness light recoater to ensure accurate and efficient recoating.

2-4

STRENGHT

In contrast to traditional CNC machines, the Kings resin 3D printer stands out with its fast speed, high precision, ability to print large formats, and environmentally friendly features. These advantages result in savings in terms of manpower, financial resources, and time.

3-2

FAST SPEED PRINTING

Kings 3D has pioneered variable beam printing and adapted their software to achieve faster printing speeds

DAY

CUSTOMIZED SOFTWARE

Kings 3D has developed specialized software for automotive 3D printing, drawing on their extensive experience with SLA 3D printers. They have established reliable parameters for printing auto parts using this technology.

DAY-1

CUSTOM TAILORED

Kings 3D provide a lot of customized options for free. The available upgrades include autofocus, automatic material reinfting, environmental sensor, and remote diagnosis and control to ensure that you prepare for the industry.

4-4

FULL MARBLE STRUCTURE AND HIGH STIFFNESS LIGHT RECOATER

KINGS SLA 3D printers, featuring optimized full marble structures and customized software parameter packages, demonstrate excellent stability for continuous printing of large projects.

-без-названия-6

INDUSTRIAL APPLICATIONS

The use of 3D printing in industries like equipment manufacturing, aerospace, automobiles, and intelligent manufacturing is widespread. Its ability to create objects with comparable strength to metal has made it highly valuable for producing functional prototypes and end-use parts.

ARCHITECTURE. The integration of technology and art in 3D printing has revolutionized the production of sand plates for architectural models. With a scale of 1:120, the 3D printer can accurately reproduce intricate details and create a realistic representation of the building design. This not only saves time in the production process but also allows for easy modifications if needed. The combination of technology and artistry in 3D printing has greatly enhanced the efficiency and quality of sand plate production for architectural models.

5aea752478054

SCULPTURE. With the advent of 3D printing, artists now have the ability to create intricate and complex artworks. The possibilities are only limited by their imagination. Industrial 3D printers are particularly useful for creating art exhibits, especially those with irregular shapes. These printers can produce the entire model in one piece or split it into multiple parts, saving time and reducing the risk of transportation damage.

AUTOMOTIVE. KINGS 850Pro are extensively utilized in the development of automobile prototypes, thanks to their customized hardware and software. These printers offer high precision, exceptional surface smoothness, and significantly reduce the product development process.

LARGE PROTOTYPE. Kings 850Pro Machine is gaining popularity due to the growing trend of larger 3D printing prototypes. With its large printing format, the Kings 850Pro can produce large-scale prototypes in one piece. Kings 3D is the first company in China to develop an SLA 3D printer with a printing volume of 850*850*500mm. The Kings 850Pro stands out from other brands due to its fast printing speed and long-term printing stability.

SHOES. KINGS is a renowned manufacturer of 3D printers that specializes in providing efficient solutions for mass producing shoe models. With their cutting-edge technology, KINGS has revolutionized the process of making shoe models by reducing the time required to modify 3D files for printing by 5 hours.

5aea6ee266536-1

Shoe prototype: quickly checking the shoe design

3D printing is shaping new possibilities in footwear engineering, enabling footwear companies to create shoe models with clear lines, sharp edges and corners and also address the growing demand for customization.

 

Soft shoe model for fitting test

With KS198S rubber like resin, the 3D Printed shoe model can be used for checking design, and can also be tried on for fitting test.

 

Casting shoe model: replacing wooden model

The use of 3D printed shoe molds can effectively replace the CNC-engraved wooden molds and perform sand casting, and the molds made have finer textures and patterns.

 

3D printed models for quick mold

The 3D printed mold skips the casting process and directly uses it for the production of PU shoe soles. It can be used for plastic injection, PU and cold-pressed insole molds. It is temporarily not suitable for hot-pressed rubber, molded EVA and injection EVA.

 

Direct printing of finished shoe soles

In the future, everyone can tailor their own shoe with 3D printing. It is more in line with the personal size, and at the same time can achieve a lighter and more comfortable sole structure.

MEDICINE. Each medical facility should have access to the latest tools in order to enhance patient care and provide the best possible experience. 3D printing technology offers personalized solutions in healthcare by improving workflow efficiency, enabling faster surgeries, enhancing identification and visualization, and providing innovative options for patients.

KEY FEATURES OF SLA 3D PRINTER FOR MEDICINE:

1. Customized Component Production: 3D printing allows for the production of small batches or even individual parts without any additional costs or the need for extra time or tools.

2. Complex Geometric Shapes: Medical SLA 3D printers can easily produce intricate shapes using a variety of materials, including plastics and metals. This capability is especially useful in highly customized applications.

3. One-Piece Molding and High Accuracy: The ability to create objects in a single piece improves design efficiency, reduces costs, and shortens production time.

4. Gap Elimination: 3D printing eliminates the gaps between multiple components, making it easier to disinfect equipment and reducing the potential for bacterial growth.

5. Time and Cost Savings: By utilizing 3D scanning and X-ray technologies, medical professionals can quickly create detailed 3D models, saving both time and costs associated with traditional methods.

FUNCTION OF 3D PRINTER

 

Industrial 3D printers can produce items by directly receiving digital data from CAD files, eliminating the need for machining or molds, which significantly reduces production cycles and increases productivity. The rapid progress in 3D printing technology over the past 10 years has made it one of the dominant technologies in the industry. Today, industrial 3D printers are well-suited for producing individual parts and for small to medium-scale production.

The post Kings 1200Pro – Large-Format SLA 3D Printer for Industrial Use appeared first on Dev.

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