3D printing services
Enables support for the five extensively applied manufacturing processes in 3D printing.
High-precision custom 3D printing services for industrial parts—from rapid prototyping to low-volume production. We offer multi-material solutions, tailored to your manufacturing needs. Request a free quote today!
Production parts in just 3 days
130+ thermoplastic & elastomeric materials
Our custom 3D printing capabilities
Stereolithography (SLA)
Filament materials (e.g., PLA, ABS) are heated and melted in a nozzle, then extruded layer-by-layer along a predefined path, and solidified after cooling.
Low equipment cost, simple operation, wide material selection
High rigidity, impact-resistant, easy to process (platable), good surface gloss.
Material tolerance:±0.3mm or within 0.4%
High strength, good toughness, better temperature resistance than PLA (approx. 70-90°C); however, a heated bed is required during printing (to prevent warping), and trace VOCs are released (ventilation is recommended)
high toughness (impact-resistant), good weather resistance (UV-protective), chemical corrosion resistance (food-contact safe), and no obvious warping
(Shore hardness: 50A-95A), wear-resistant, oil-resistant; temperature control is required during printing to avoid stringing
High strength, high rigidity, good temperature resistance (PA6: approx. 120°C heat resistance); however, it has high hygroscopicity (drying is required before printing), making it suitable for load-bearing parts
SLA technology cures liquid resin via UV irradiation to form parts, with precision up to 0.01mm and low surface roughness (Ra < 1μm). It is suitable for fine prototypes and appearance parts, with materials supplied in "liquid resin" form.
A high-performance engineering plastic with temperature resistance up to 250°C or higher, resistance to strong acids/alkalis and radiation, and strength close to that of metals. It requires high-temperature FDM or SLS (Selective Laser Sintering) for printing and is used in aerospace parts, medical implants (e.g., bone scaffolds), and petrochemical equipment accessories.
Performance is close to PEEK, but it has better formability and slightly lower cost. It is often used in lightweight aerospace structural parts and high-end medical equipment.
Good toughness, chemical corrosion resistance, and food-contact safety; however, its high shrinkage rate (prone to warping) requires specialized FDM equipment (e.g., heated enclosed chambers). It is used in food packaging and chemical container prototypes.
- Stainless Steel 316L
- Stainless Steel 304
- Ti-6Al-4V (TC4 Titanium Alloy)
- Al6061 (6061 Aluminum Alloy)
- AlSi10Mg
- Inconel 718
- Copper (Pure Copper)
- Tool Steel ( H13)
- Stainless Steel 316L
- Stainless Steel 304
- Ti-6Al-4V (TC4 Titanium Alloy)
- Al6061 (6061 Aluminum Alloy)
- AlSi10Mg
- Inconel 718
- Copper (Pure Copper)
- Tool Steel ( H13)
Filter By:
As machined
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
ABS
Visible tooling marks.
As machined
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
ABS
Visible tooling marks.
As machined
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
ABS
Visible tooling marks.
Water Transfer Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches
Painting/Coating
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Painting
No visible scratches
Screen Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Screen Printing
No visible scratches
Pad Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches
Water Transfer Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches
Water Transfer Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches
Water Transfer Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches
Water Transfer Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches
Water Transfer Printing
As machined finish is a raw finish that displays machining marks from the machining process. As standard we machine to 3.2Ra, however you can specify the surface roughness down to 0.2Ra.
Pad Printing
No visible scratches