Product Details
Place of Origin: Made In China
Brand Name: Dayoo
Payment & Shipping Terms
Printing Technology: |
3D Printing |
Assembly: |
Easy |
Efficiency: |
High |
Flexibility: |
High |
Weight: |
Lightweight |
Design: |
Sleek |
Material: |
Ceramic |
Customization: |
Available |
Precision: |
High |
Size: |
3D |
Compatibility: |
Versatile |
Durability: |
High |
Cost: |
Affordable |
Function: |
Robotic Arms |
Printing Technology: |
3D Printing |
Assembly: |
Easy |
Efficiency: |
High |
Flexibility: |
High |
Weight: |
Lightweight |
Design: |
Sleek |
Material: |
Ceramic |
Customization: |
Available |
Precision: |
High |
Size: |
3D |
Compatibility: |
Versatile |
Durability: |
High |
Cost: |
Affordable |
Function: |
Robotic Arms |
Our advanced 3D modeled ceramic robotic arm combines parametric CAD design with DLP photopolymerization 3D printing technology. Utilizing 99.9% pure alumina ceramic (Al₂O₃), this solution enables complex internal geometries and functional integration unachievable through conventional manufacturing. The digital modeling process optimizes kinematic performance while maintaining exceptional structural integrity.
Precision Electronics: Micro-component handling and assembly
Biomedical Operations: Cell culture and drug dispensing
Cleanroom Environments: Semiconductor wafer transfer
Special Material Processing: Corrosive media handling
Research Experiments: High-accuracy repetitive motions
Structural Optimization: Topology reduction achieves 30% weight savings without compromising strength
Functional Integration: Monolithic printing of internal channels and sensor mounts
Precision Performance: ±0.005mm repeat positioning accuracy
Customization Flexibility: Model adjustments completed within 72 hours
Parameter | Specification |
---|---|
Modeling Software | SolidWorks/UG/Creo |
Printing Resolution | ±15μm |
Degrees of Freedom | 4-6 axis configurable |
Maximum Payload | 8kg |
Operating Temperature | -60℃~350℃ |
Surface Finish | Ra0.08μm |
Modeling Cycle | 3-5 business days |
Requirements Analysis: Application scenario evaluation
Conceptual Design: Kinematic simulation
Detailed Modeling: Parametric structure development
FEA Simulation: Stress/strain analysis
Print Preparation: Support structure optimization
Post-Processing: Sintering protocol matching
Conduct 72-hour run-in testing before deployment
Regular ceramic bearing lubrication (every 500 hours)
Maintain operation below 350℃ threshold
Use dedicated control software
Monthly inspection of internal channel integrity
Complimentary 3D modeling consultation
Lifetime design optimization upgrades
Full component traceability
Annual calibration service
Q: Can complex internal channels be achieved?
A: Supports internal channels ≥0.3mm diameter
Q: Required file formats for modeling?
A: Accepts STEP/IGES/X_T universal formats
Q: Motion simulation services available?
A: Comprehensive trajectory analysis reports provided
Q: Minimum feature size capability?
A: Achieves 0.1mm fine structural details