Processing Features:Complex thin‑wall curved hollow housing, multi‑direction bearing seats, inner gear‑type bore, distributed mounting bosses. Titanium alloy features low thermal conductivity, high cutting tool wear; requires specialized tooling and stable low‑speed cutting parameters for thin‑wall anti‑deformation control.
Part Advantages:Ultra‑light weight with high structural strength, anti‑corrosion property, long service life, high dimensional stability, suitable for high‑load, high‑precision robotic joint assembly.
| Item | Specification |
|---|---|
| Main Body Material | Titanium Alloy (main), support Aluminum, Stainless Steel, Brass, Carbon Steel, POM |
| Overall Outer Width | 170 mm |
| Overall Height | 155 mm |
| Key Feature | Thin‑wall curved hollow housing, bearing bore, inner gear feature, multi‑direction mounting bosses |
| Tolerance | ±0.015‑0.03 mm |
| Core Process | 5‑Axis CNC Milling, Specialized Titanium Cutting, Tapping, Precision Deburring |
| Surface Finish | Fine machined metallic finish |
| Custom Method | Custom manufactured per customer CAD drawings or samples |
Besides titanium alloy complex robotic housings, we support diversified material processing options. We are capable of producing similar complex thin‑wall structural components in aluminum alloy, stainless steel, brass, carbon steel and engineering plastic POM. Whether you need robot joint shells, aerospace structural parts or high‑end automation housings, we can strictly produce according to your drawings or samples.
We deliver full‑range service including drawing feasibility review, raw material sourcing, multi‑axis CNC machining, full dimensional inspection and finished‑product packaging. Original mill material certificates can be provided upon request.