Online 3D Printing Services
We offer 3D printing, or additive manufacturing, to create precise three-dimensional objects directly from your CAD designs, built layer by layer.
TiProto 3D Printing Services
At TiProto, we provide advanced 3D printing solutions to meet your custom manufacturing needs, from product prototyping to industrial-scale production. Our services cover a wide range of technologies including FDM, SLA, SLS, MJF, and SLM, ensuring high-quality parts with precise details and excellent mechanical properties.
SLM 3D Printing
Selective Laser Melting (SLM) fully melts metal powder with a laser, producing high-strength metal components. Perfect for complex or lightweight metal structures.
MJF 3D Printing
Multi Jet Fusion (MJF) employs proprietary technology with PA12 material to create robust parts with fine surface finishes and consistent mechanical properties.
SLS 3D Printing
Selective Laser Sintering (SLS) fuses powdered material with a high-power laser, producing strong, durable parts suitable for functional applications.
SLA 3D Printing
Stereolithography (SLA) uses a laser to cure liquid resin into highly detailed solid parts. SLA delivers smooth surfaces and precise geometries.
FDM 3D Printing
Fused Deposition Modeling (FDM) is an additive process where thermoplastic material is deposited layer by layer to form solid parts. FDM is ideal for prototypes and functional components.
Our 3D Printing Materials
We offer a wide range of industrial-grade 3D printing materials for prototyping and end-use parts.
Our materials ensure high strength, precision, and durability for demanding applications.
SLM
Stainless Steel (316L, 17-4PH)
Aluminum Alloy (AlSi10Mg, 6061)
Titanium Alloy (TC4 / Ti6Al4V)
Tool Steel (18Ni300)
Nickel Alloy (Inconel 625 / 718, GH3625 / GH4169)
Copper Alloy (CuCrZr)
MJF
PA11
PA12
PA12GB (Glass Bead) Black
SLS
PA11
PA12
TPU
PA6GF
PA6CF
PA12GF (Glass-Filled)
EOS PA2200
EOS PA3200GF (PA12GB)
SLA
Black Resin
Ductile Resin
Transparent Resin
Fine Red Wax Resin
FDM
ABS
ASA
Nylon
PC
PEEK
PETG
PLA
PP
TPU
3D Printing Process
| | SLA | MJF | SLS | SLM |
|---|---|---|---|---|
| Min. Wall Thickness | 0.6mm for unsupported walls, 0.4mm for supported walls on both sides | At least 1mm thick; avoid overly thick walls | From 0.7mm (PA 12) to 2.0mm (carbon‑filled polyamide) | 0.8 mm |
| Layer Height | 25 μm to 100 μm | Around 80μm | 100‑120 microns | 30 – 50μm |
| Max. Build Size | 1400×700×500mm | 264×343×348mm | 380×280×380mm | 320×320×400mm |
| Dimension Tolerance | ±0.2mm (For >100mm, apply 0.15%) | ±0.2mm (For >100mm, apply 0.25%) | ±0.3mm (For >100mm, apply 0.35%) | ±0.2mm (For >100mm, apply 0.25%) |
| Standard Lead Time | 4 business days | 5 business days | 6 business days | 6 business days |
| Surface Finish (Ra) | Normal: 3.2μmAfter polishing: 1.6μm | 3.2‑6.3μm(No secondary processing for nylon) | 3.2‑6.3μm(Polishing/grinding available) | 3.2‑6.3μm(Polishing/grinding available) |
Supported Surface Treatment & Post-Processing
Secondary CNC Machining
Improve dimensional accuracy and achieve precise holes, threads, and critical mating surfaces.
Polishing
Smooth the surface and improve the appearance of 3D printed parts.
Painting
Add custom colors and protective coatings to achieve the desired appearance.
Vapor Smoothing
Reduce surface roughness and create a smoother, more uniform finish.
Dyeing / Black Dyeing
Add consistent colors to suitable polymer 3D printed parts, including black dye finishes.
Bead Blasting
Create a uniform matte texture while removing minor surface imperfections.
Sanding
Refine the surface and reduce visible layer lines or printing marks.
Electroplating
Enhance appearance, corrosion resistance, wear resistance, and surface performance.
Industries We Serve
Aerospace
Automotive
Consumer Electronics
Education
Figure
Industrial Manufacturing
Medical & Healthcare
Robotics & Automation
Tooling & Mold Making
Start Your Project with TiProto
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