Automotive & Motorsports
🤖 Collaborative Robot (Cobot) Actuator Housings
Thin-wall complex housings with integrated bearing journals, precision gear mounting features, sealing surfaces, and connector ports
What is Collaborative Robot (Cobot) Actuator Housings?
🤖 Collaborative Robot (Cobot) Actuator Housings represents a complete system of precision titanium components engineered for Automotive & Motorsports applications. Thin-wall complex housings with integrated bearing journals, precision gear mounting features, sealing surfaces, and connector ports The system integrates 0 distinct component types manufactured through 3 specialized processes.
Engineering & Design Principles
Material: Grade 5 (Ti-6Al-4V) provides 45% weight saving vs steel and 2x the strength of 6061-T6 aluminum, enabling lighter cobot arms with higher payload capacity and better safety.
Form: Bar stock for small actuator housings (<100mm dia). Forged blanks for larger housings requiring enhanced mechanical properties.
Standards & Material Specifications
Standards: ASTM B348 Grade 5, STA condition, 100% dimensional + concentricity inspection, anodized finish
Engineering Solution Blueprint
Sports & Recreation Equipment
Consumer · Automotive · Other
1 Part Feature Analysis
Thin-wall contoured shapes (golf club heads, bike frames, tennis racket frames), often with variable wall thickness
- ⚠️ Impact fatigue
- ⚠️ Weight distribution
- ⚠️ Surface finish aesthetics
- ⚠️ Stress concentration at joints
2 Material Selection Rationale
Grade 5 Ti-6Al-4V — General alpha-beta alloy, high strength
Grade 5 (Ti-6Al-4V) offers the best strength-to-weight ratio for premium sports equipment. Grade 9 for frames requiring more forming.
3 Form Selection Rationale
Die Forging / Ring — for high-stress critical parts
Near-net-shape forging for golf heads ensures optimal grain flow and consistent weight. Tube forming for bike frames.
4 Manufacturing Process & Services
Core Processes:
Toll Processing Services:
Process Pitfalls:
- ⚠️ Variable wall thickness makes forging die design critical
- ⚠️ Golf club face thickness tolerance +-0.1mm affects Coefficient of Restitution (COR)
5 Procurement Specifications
ASTM B348 Grade 5 / Grade 9, annealed, 100% dimensional + weight check, anodized finish
Manufacturing Process Flow
CNC turning of titanium on multi-axis lathes produces cylindrical components with precision diameters and surface finishes. Live tooling enables milli
Professional manufacturing process for for General, Aerospace titanium components. Precision boring of bearing journals is performed by certified tech
Thread rolling cold-forms threads by displacing material between two reciprocating or rotary dies, rather than cutting it away. Compressive residual s
Components in This System
Frequently Asked Questions
What titanium grades are used in Collaborative Robot (Cobot) Actuator Housings systems?
What manufacturing processes are used for Collaborative Robot (Cobot) Actuator Housings?
What quality standards apply to Collaborative Robot (Cobot) Actuator Housings components?
What industries use Collaborative Robot (Cobot) Actuator Housings?
Can you provide DFM feedback for Collaborative Robot (Cobot) Actuator Housings designs?
Engineering Trends
- ▸ Process: CNC turning & milling of housing
- ▸ Process: Precision boring of bearing journals
- ▸ Process: Thread milling of connector ports
Related Manufacturing Capabilities
These specialized processes support Collaborative Robot (Cobot) Actuator Housings component manufacturing.
One Metal. One Focus. Infinite Precision.
Founded in 2011 in Baoji's Titanium Valley, BOZE Metal is dedicated exclusively to titanium — from raw material to precision engineering. AS9100D, ISO 13485 & ISO 9001 certified with 500+ clients across Aerospace, Medical & Motorsport industries, we deliver end-to-end precision titanium CNC machining with full material traceability from source to component.
Boze Titanium Manufacturing Center is operated by Baoji Boze Metal Products Co., Ltd.