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Additive Manufacturing

Advanced Additive Manufacturing

From high-strength metal alloys to precision ceramics and engineered composites — our 3D printing capabilities cover the full spectrum of advanced manufacturing for aerospace, medical, and industrial applications.

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Three Manufacturing Technologies, One Partner

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Metal 3D Printing

SLM & EBM powder bed fusion for aerospace-grade titanium, aluminum, and superalloy components with superior mechanical properties.

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Ceramic 3D Printing

Stereolithography and binder jetting for high-performance ceramic parts — thermal, wear-resistant, and electrically insulating.

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Composite 3D Printing

Continuous fiber and FDM extrusion for lightweight carbon/glass fiber reinforced polymers with outstanding strength-to-weight ratios.

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🔧 Metal 3D Printing

Laser Powder Bed Fusion (LPBF) with ±0.02mm precision and >99.9% density. Ideal for aerospace and UAV high-performance components. Specialized in complex structures like turbine blades.

±0.02mm (LPBF)
Precision
> 99.9%
Density
20–100μm
Layer Thickness
Ra 3.2–12.5μm
Surface Roughness
Available Metal Materials
MaterialDensityTensile StrengthApplications
Titanium Grade 5 (Ti-6Al-4V)4.43 g/cm³1160 MPaAerospace, Medical
Aluminum 70752.81 g/cm³570 MPaAerospace, Automotive
Stainless Steel 316L7.98 g/cm³560 MPaMedical, Chemical
Nickel Superalloy (Inconel 718)8.19 g/cm³1275 MPaAerospace, Turbines

🏺 Ceramic 3D Printing

Photosensitive ceramic slurry stereolithography for high-performance ceramic parts with exceptional thermal resistance, chemical inertness, and dielectric properties.

200×200×150mm
Max Build Size
±0.15mm
Precision
Up to 1600°C
Max Temperature
> 30 kV/mm
Dielectric Strength
Available Ceramic Materials
MaterialDensityTensile StrengthApplications
Alumina (Al₂O₃)3.95 g/cm³300 MPaThermal, Wear-resistant
Zirconia (ZrO₂)6.1 g/cm³900 MPaMedical, High-temp
Silicon Carbide (SiC)3.21 g/cm³400 MPaAerospace, Chemical

🧵 Composite 3D Printing

Carbon Fiber Reinforced Polymer (CFRP) 3D printing with 3x the strength-to-weight ratio of aviation aluminum. Ideal for UAV airframes, robotic arms, and lightweight structural components.

500×500×600mm
Max Build Size
±0.2mm
Precision
Up to 60% (continuous)
Fiber Volume Fraction
250°C (PEEK-based)
Max Service Temp
Available Composite Materials
MaterialDensityTensile StrengthApplications
Carbon Fiber (CFRP)1.6 g/cm³600 MPaAerospace, Automotive
Glass Fiber (GFRP)1.9 g/cm³300 MPaGeneral Purpose, Marine
Aramid Fiber (AFRP)1.4 g/cm³400 MPaImpact-resistant, Ballistic

Technology Comparison

FeatureMetal (SLM/EBM)Ceramic (SLA)Composite (FDM)
TechnologySLM / EBMStereolithography (SLA)FDM Extrusion
MaterialsTi, Al, Steel, Ni alloysAlumina, Zirconia, SiCCarbon / Glass / Aramid fiber
Precision±0.1mm±0.15mm±0.2mm
Build SpeedMediumSlowFast
Post-ProcessingHeat treatment, HIPSintering, glazingCuring, surface coating

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