AFS-M300XAS Multimaterial constituency laser melting and reduction material manufacturing equipment
Industrial-grade enrichment solutions for multi-material, gradient-material and complex metal parts
AFS-M300XAS was developed and made for high-performance metal parts.Multimaterial constituency laser melting (SLM) materials manufacturing equipment, supports horizontal continuous gradients, total 3D gradients and local gradients, and provides additional possibilities for the manufacture of functional gradient materials and complex structures beyond the 3D printing of traditional single material metals.
Maximum device scanning speed available 6 m/sMaximum form precision ±0.1 mm, maximum print efficiency 50 cm³/hMax. 300 × 300 × 250 mm。 Integrated formation of various metal materials such as stainless steel, titanium alloy, aluminium alloy, moulded steel, cobalt chromium alloy and nickel-based alloy.
AFS-M300XAS is better suited to haveComplex internal structures, multimaterial combinations, local performance enhancements and gradient material designDemand development and manufacturing projects provide more flexible digital manufacturing capabilities in areas such as aerospace, energy power, high-end equipment, modelling development and research on new materials.
Core strengths
01 Multimaterial metal enrichment
Breaking through the traditional single metal material formation approach, multiple material manufacturing can be conducted for different material systems and performance needs, providing greater design space for complex functional parts and new materials.
02 Multiple gradient material manufacturing capabilities
SupportHorizontal continuous gradient, full 3D gradient, local gradientThis will be done by means of material and structural design based on the performance needs of different areas of the parts, which will provide the equipment base for functional gradient material research and engineering applications.
03 Maximum 6 m/s scan speed
High-speed scanning systems that combine manufacturing efficiency with complex structural formation requirements with maximum scanning speed 6 m/s, applicable to the rapid development, testing and manufacture of metal parts.
04 Maximum ± 0.1 mm formation precision
Maximum device formation accuracy achieved ±0.1 mmto meet the manufacturing needs of complex metal parts for size accuracy and structural integrity.
05 50 cm3/h maximum printing efficiency
Maximum print efficiency achieved 50 cm³/h, increase the efficiency of metal parts manufacturing while ensuring complex structural formation capabilities.
06 Extensive metal material adaptability
Supportstainless steel, titanium alloy, aluminium alloy, mould steel, cobalt chromium alloy, nickel-based alloy, etc.Metal materials may be selected for different industrial applications and performance requirements.
| Parameter items: | AFS-M300XAS |
|---|---|
| Device model: | AFS-M300XAS |
| Forming technology: | SLM constituency laser melting |
| Device type: | Equipment for the manufacture of laser melting and reduction materials in multimaterial constituencies |
| Device main size: | 2760 × 1760 × 2620 mm |
| Size of form: | 300 × 300 × 250 mm |
| Device weight: | About 5 t |
| Form layer thick: | 0.02–0.1 mm |
| Maximum scanning speed: | 6 m/s |
| Maximum form accuracy: | ±0.1 mm |
| Maximum printing efficiency: | 50 cm³/h |
| Forming material: | stainless steel / titanium alloy / aluminium alloy / mould steel / cobalt chromium alloy / nickel-based alloy, etc. |
| Gradient manufacturing capacity: | Horizontal continuous gradient / Full 3D gradient / Local gradient |
Aerospace
Light quantification of complex structures and high performance metal parts
It applies to the development of complex metal structures, light quantitative components and functional components with local differential performance needs. The SLM process can reduce the limitations of complex geometric structures in traditional manufacturing methods, while multimaterial and gradient manufacturing capabilities further expand high performance structure design space.
Energy power
High temperature, corrosive and complex fluid components
Material such as nickel-based alloy, stainless steel, etc., can be combined with enrichment and new structural verification for complex fluids, high temperature environments and parts that can require significant demand in different regions of energy power equipment.
Vehicles and new energy vehicles
Rapid R & D and light quantification of high performance components
Complex structural components, light-quantification parts, research and development samples and functional certification device manufacture applicable to automobiles and new energy vehicles to shorten the development and validation process from digital models to physical parts.
Modelling
Manufacture of complex molds and functional structures
SLM technology can create complex internal structures that are difficult to achieve in traditional processing and can be used in the development of high performance molds, complex cooling structures and special function areas, providing additional design possibilities for thermal modelling and structural optimization of molds.
High-end industrial equipment
Complex metal functional components integrated into form
For industrial machinery, high-end equipment and complex parts in precision manufacture, more liberal structural design and integrated manufacturing can be achieved by reducing design constraints associated with traditional multi-component processing, connectivity and assembly.
New materials and research
Multimaterial and functional gradient material development
This is the direction I think this device page should focus most on.
AFS-M300XAS support level continuous gradients, total 3D gradients and local gradients, and therefore particularly applicableFunctional gradient materials, multi-material interfaces, new alloy systems and material performance studiesNew materials development and process validation for universities, scientific institutions, material laboratories and enterprise research and development centres. The official pages also show samples of “3D printing gradient metal” and “316L-CoCrMo continuing gradient alloy”.