AXIS MJW Series

AXIS MJW 4600P

 Launch in March 2025.
Reservations begin October 2024.

Wax filaments are used to produce flexible, durable, high-quality jewelry patterns. These materials are designed to achieve the reliable performance and consistent results obtained from traditional lost wax casting processes and equipment.

The wax materials melt similarly to standard casting waxes, resulting in zero ash content during casting. The wax material is highly durable for handling and casting delicate features, and its contrasting colors make details easily visible.

Expanded print mode options optimize quality for different design styles and types of jewelry, including improved surface quality.


For professional use.

Smoothness of the modeling surface that cannot be achieved with conventional FFF and FDM.





Five reasons to choose AXIS MJW 4600P
1. high productivity
Increases the flexibility, efficiency, and quality of jewelry casting pattern manufacturing by allowing it to be tailored to your manufacturing workflow. Choose from four print modes to match the level of speed, geometric complexity, and surface quality required for your design. Enables rapid single lane printing for high volume production and high print speeds, improving foundry efficiency. Boasting large mold sizes and 24/7 operation, this next-generation wax 3D printer delivers high productivity, fast amortization, and a high return on investment.

Advanced software features optimize workflow from file to pattern creation. The printer's fast, versatile MJW print speeds and batch support removal enable you to create high-quality, instantly castable jewelry patterns.

Maximize productivity by selecting the best print mode for different styles and types of jewelry.

2. High-resolution patterns

Produce jewelry patterns with precise, sharp edges and exceptional detail that faithfully reproduces the original CAD design. This reduces the significant effort required to polish expensive precious metals and increases design flexibility. Direct printing of these fine detail wax patterns eliminates the time, cost, and geometric constraints associated with traditional tools.

3. high throughput production of pure wax jewelry patterns for lost wax casting

The printer enables high quality, precise jewelry casting patterns. This 100% wax printer offers fast print speeds and large scale build capabilities that can be tailored to your workflow, allowing you to run multiple small production batches followed by large scale builds the next day. The printer's unmatched productivity, efficiency, quality, and design freedom make it ideal for high-volume production of fine detail jewelry casting patterns.



4. optimized surface quality and productivity through the printer's expanded print mode options
Metal casting workflow for faster production of more patterns

5. extensive materials
Reliable high-fidelity casting patterns, including fine feature definition and sharp edges
Effective support removal for greater shape flexibility
High-performance, durable casting waxes
Low total cost of ownership (TCO)

Molding Samples


 Product Overview and Specifications  
Design verification, general to precision prototyping, casting, jigs, molds, etc.

Advantages
Reduction of prototype molds and prototype outsourcing costs
Shortened development turnaround time
Prevention of confidential information leakage
Production of one-of-a-kind, complexly shaped products


Product Specifications
Product name   AXIS MJW 4600P

Fabrication method
FDM (thermal melting and stacking) method


Stacking pitch (Z-axis) 0.127 / 0.178 / 0.254 / 0.330mm
 

Parts material type
Wax filament/Acrylic curable resin: White / Black / Clear
Elastomer: Black / Natural


Support materials
QSR (alkaline water soluble) / SUP4000B
(breakaway: when using Diran)



Features
Ultra-fine molding, high precision

Effective molding area
W335mm × D301mm × H355mm

Resolution
1800 x 1500 x 2400DPI

Accuracy
±0.1mm for 25.4mm size

AXIS MJW 5600P

 Launch in March 2025.
Reservations begin October 2024.

Wax materials are used to produce flexible, durable, high-quality jewelry patterns. These materials are designed to achieve the reliable performance and consistent results obtained from traditional lost wax casting processes and equipment.

The wax materials melt in the same manner as standard casting waxes, resulting in zero ash content during casting. The wax material is highly durable for handling and casting delicate features, and its contrasting colors allow for easy visualization of details.

Expanded print mode options optimize quality for different design styles and types of jewelry, including improved surface quality.

For professional use.

Smoothness of molding surface that could not be achieved with conventional FFF and FDM is realized.

It can also be used for large-size molding.



Five reasons to choose AXIS MJW 5600P

1. high productivity
Increases flexibility, efficiency, and quality in jewelry casting pattern manufacturing by allowing you to adjust to your manufacturing workflow. Choose from four print modes to match the level of speed, geometric complexity, and surface quality required for your designs. Enables rapid single lane printing for high volume production and high print speeds, improving foundry efficiency. Boasting large mold sizes and 24/7 operation, this next-generation wax 3D printer delivers high productivity, fast amortization, and a high return on investment.

Advanced software features optimize workflow from file to pattern creation. The printer's fast, versatile MJW print speeds and batch support removal enable you to create high-quality, instantly castable jewelry patterns.

Maximize productivity by selecting the best print mode for different styles and types of jewelry.

2. High-resolution patterns

Produce jewelry patterns with precise, sharp edges and exceptional detail that faithfully reproduces the original CAD design. This reduces the significant effort required to polish expensive precious metals and increases design flexibility. Direct printing of these fine detail wax patterns eliminates the time, cost, and geometric constraints associated with traditional tools.

3. high throughput production of pure wax jewelry patterns for lost wax casting

The printer enables high quality, precise jewelry casting patterns. This 100% wax printer offers fast print speeds and large scale build capabilities that can be tailored to your workflow, allowing you to run multiple small production batches followed by large scale builds the next day. The printer's unmatched productivity, efficiency, quality, and design freedom make it ideal for high-volume production of fine detail jewelry casting patterns.



4. optimized surface quality and productivity through the printer's expanded print mode options
Metal casting workflow for faster production of more patterns

5. extensive materials
Reliable high-fidelity casting patterns, including fine feature definition and sharp edges
Effective support removal for greater shape flexibility
High-performance, durable casting waxes
Low total cost of ownership (TCO)

Molding Samples



 Product Overview and Specifications  Design verification, general to precision prototyping, casting, jigs, molds, etc.AdvantagesReduction of prototype molds and prototype outsourcing costsShortened development turnaround timePrevention of confidential information leakageProduction of one-of-a-kind, complexly shaped products


Product Specifications
Product name   AXIS MJW 5600P

Fabrication method FDM (thermal melting and stacking) method


Stacking pitch (Z-axis) 0.127 / 0.178 / 0.254 / 0.330mm


Parts material type
Wax filament/Acrylic curable resin: White / Black / Clear
Elastomer: Black / Natural


Support materials
QSR (alkaline water soluble) / SUP4000B
(breakaway: when using Diran)


Features
Ultrafine modeling, high precision, large-size modeling

Effective molding area
W365mm × D306mm × H385mm

Resolution
2000 x 1800 x 2900 DPI

Accuracy
±0.1mm for 25.4mm size

AXIS MJW 6600P

 Launch in March 2025.
Reservations begin October 2024.

Large parts and complete sets of small parts for assembling large modeling objects can be modeled. In addition, prototypes, production support jigs, and final parts can be 3D modeled in a variety of materials and colors, including Wax materials are used to produce flexible, durable, high-quality jewelry patterns. These materials are designed to achieve the reliable performance and consistent results obtained from traditional lost wax casting processes and equipment.

The wax materials melt in the same manner as standard casting waxes, resulting in zero ash content during casting. The wax material is highly durable for handling and casting delicate features, and its contrasting colors allow for easy visualization of details.

Expanded print mode options optimize quality for different design styles and types of jewelry, including improved surface quality.

For professional use.

Smoothness of molding surface that could not be achieved with conventional FFF and FDM is realized.

It can also be used for large-size molding.


Five reasons to choose AXIS MJW 6600P

1. high productivity
Increases flexibility, efficiency, and quality in jewelry casting pattern manufacturing by allowing you to adjust to your manufacturing workflow. Choose from four print modes to match the level of speed, geometric complexity, and surface quality required for your designs. Enables rapid single lane printing for high volume production and high print speeds, improving foundry efficiency. Boasting large mold sizes and 24/7 operation, this next-generation wax 3D printer delivers high productivity, fast amortization, and a high return on investment.

Advanced software features optimize workflow from file to pattern creation. The printer's fast, versatile MJW print speeds and batch support removal enable you to create high-quality, instantly castable jewelry patterns.

Maximize productivity by selecting the best print mode for different styles and types of jewelry.

2. High-resolution patterns

Produce jewelry patterns with precise, sharp edges and exceptional detail that faithfully reproduces the original CAD design. This reduces the significant effort required to polish expensive precious metals and increases design flexibility. Direct printing of these fine detail wax patterns eliminates the time, cost, and geometric constraints associated with traditional tools.

3. high throughput production of pure wax jewelry patterns for lost wax casting

The printer enables high quality, precise jewelry casting patterns. This 100% wax printer offers fast print speeds and large scale build capabilities that can be tailored to your workflow, allowing you to run multiple small production batches followed by large scale builds the next day. The printer's unmatched productivity, efficiency, quality, and design freedom make it ideal for high-volume production of fine detail jewelry casting patterns.



4. optimized surface quality and productivity through the printer's expanded print mode options
Metal casting workflow for faster production of more patterns

5. extensive materials
Reliable high-fidelity casting patterns, including fine feature definition and sharp edges
Effective support removal for greater shape flexibility
High-performance, durable casting waxes
Low total cost of ownership (TCO)

Molding Samples


 Product Overview and Specifications  
Design verification, general to precision prototyping, casting, jigs, molds, etc.AdvantagesReduction of prototype molds and prototype outsourcing costsShortened development turnaround timePrevention of confidential information leakageProduction of one-of-a-kind, complexly shaped products


Product Specifications
Product name  AXIS MJW 6600P

Fabrication method FDM
(thermal melting and stacking) method


Stacking pitch (Z-axis) 0.127 / 0.178 / 0.254 / 0.330mm


Parts material type
Wax filament/Acrylic curable resin: White / Black / Clear
Elastomer: Black / Natural

Support materials

QSR (alkaline water soluble) / SUP4000B
(breakaway: when using Diran)





Features
Ultrafine modeling, high precision, large-size modeling

Effective molding area
W551mm × D506mm × H603mm

Resolution
2200 x 1900 x 3000 DPI


Accuracy
±0.1mm for 25.4mm size