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Industrial Titanium 3D Printing Services
Precision Engineered for Extreme Performance & Lightweight Strength
About Our Titanium 3D Printing
We maintain strict lot traceability and use virgin, gas-atomized titanium powders to guarantee optimal mechanical properties. Every build batch undergoes rigorous chemical composition analysis and density testing to ensure complete elimination of internal voids.

What Material We Handle
| Alloy Designation | Common Standard | Tensile Strength (MPa) | Yield Strength (MPa) | Elongation (%) | Primary Industrial Applications |
|---|---|---|---|---|---|
| Titanium Grade 5 | Ti-6Al-4V (ELI) | ≥950 | ≥880 | ≥10 | Aerospace structural parts, surgical implants |
| Titanium Grade 2 | Commercially Pure (CP-Ti) | ≥345 | ≥275 | ≥20 | Chemical processing equipment, heat exchangers |
| Titanium Grade 23 | Ti-6Al-4V ELI | ≥900 | ≥830 | ≥12 | Fracture-critical medical devices, orthopedic cages |
Advanced SLM Printing Facility & Infrastructure
Industrial-grade machinery, inert gas environments, and automated post-build workflowsOur manufacturing plant houses state-of-the-art dual-laser and quad-laser SLM systems equipped with large build envelopes. Operating under strict oxygen-controlled inert gas (Ar) atmospheres, our systems prevent oxidation during the high-energy fusion process. From automated build preparation to precise stress-relief heat treatment furnaces, our vertically integrated plant handles your titanium projects from raw CAD data to finished, certified components.

Trusted Where Failure Is Not an Option
Titanium 3D printing eliminates design compromises, allowing engineers to consolidate multi-part assemblies into single, optimized monolithic structures. Below is how our titanium parts compare across key performance metrics against conventional methods:
| Performance Metric | Traditional Machining / Casting | Our SLM Titanium Manufacturing |
|---|---|---|
| Design Freedom | Limited by tool access, draft angles, and casting molds | Unlimited internal channels, complex lattices, and hollow cores |
| Material Utilization | Low (High buy-to-fly ratio, significant raw material waste) | High (Powder is recyclable; near-net-shape geometry) |
| Lead Time for Prototypes | Weeks to months (requires tooling or long setups) | Days (Direct from CAD to build plate) |
| Lead Time for Prototypes | Weeks to months (requires tooling or long setups) | Days (Direct from CAD to build plate) |
Material Selection Assistance
Post-Processing & Quality Assurance
Thermal Stress Relief & Annealing
Hot Isostatic Pressing (HIP)
Precision CNC Machining
Surface Finishing & Quality Inspection
Custom Finishing Solutions:
Don’t see the finish you need? Contact our team to discuss custom finishing options for your specific application requirements.















