Full-Chain Layout of Metal Additive Manufacturing
Equipment Powder Application Services
Metal 3D Printing Powder
Rich Product Range · 100% Import Substitution · Leading Technology/Scale/Market
Targeting application fields such as aerospace, biomedical, and consumer electronics, we have developed 9 series with over 200 types of dedicated 3D printing powder products, including titanium alloys, superalloys, aluminum alloys, and mold steels. Customization is supported, and they are widely applicable to manufacturing processes such as selective laser melting, injection molding, and hot isostatic pressing.
SLM Metal 3D Printing Equipment
Self-Developed Open Source · Multiple Build Sizes · Benchmarking Industry-Leading Technology
Targeting the manufacturing of critical components for national major equipment such as missiles, rockets, satellites, and aircraft, as well as high-end application fields like aerospace and biomedical, we have successfully developed multiple models of metal 3D printers, providing the industry with high-stability, high-efficiency forming equipment solutions.
3D Printing Component Development
Full-Process Process Support · Providing Metal 3D Printing Solutions
Based on the mainstream SLM process, we carry out component processing services including 3D printing, post-processing, and quality inspection, providing development services for multi-size, lightweight, complex-structure components for application fields such as aerospace, biomedical, and consumer electronics.
Powder for Additive Manufacturing (3D Printing)
Titanium Alloy Powder Series
Titanium alloy is a lightweight structural metal material based on the element titanium
Widely used in aviation, aerospace, medical, and marine engineering fields
High Strength
High Heat Resistance
Good Corrosion Resistance
Good Biocompatibility
TC4 Titanium Alloy Powder
Material Properties
TC4 is currently the most widely used titanium alloy material, featuring good process plasticity and superplasticity, excellent comprehensive mechanical properties, and a long-term working temperature of up to 400°C
Typical Applications
Aero-engine fan blades, compressor blades, aircraft frames and beams, brackets, etc.; artificial joints, hip joints, etc.
Applicable Processes
SLM, LSF, EBM
| Chemical Composition wt.% |
Ti | Al | V | C | Fe | O | N | H |
| Balance | 5.5-6.75 | 3.5-4.5 | ≤0.08 | ≤0.3 | ≤0.12 | ≤0.03 | ≤0.015 |
| Physical Properties | Particle Size Range/μm | Sphericity | Apparent Density g/cm³ |
Tap Density g/cm³ |
Flowability s/50g |
||
| D10 | D50 | D90 | |||||
| ≥18 | 30-40 | ≤60 | ≥0.9 | ≥2.4 | ≥2.8 | ≤35 | |
| Mechanical Properties | As-Built State | Annealed State | ||||
| Tensile Strength/MPa | Yield Strength/MPa | Elongation/% | Tensile Strength/MPa | Yield Strength/MPa | Elongation/% | |
| ≥1130 | ≥1040 | ≥8.0 | ≥1000 | ≥950 | ≥10.0 | |










