Custom 5-Axis CNC Machined Aluminum Bracket for Robotic Gripper Assembly
Product Summary
Custom 5-Axis CNC Machined Aluminum Bracket for Robotic Gripper Assembly Quick detail This custom aluminium robotic gripper bracket is fabricated by 5-axis CNC milling. It adopts a hollow frame structure with complex cutouts, slotted holes and precision threaded holes. The surface is bead blasted ...
Product Custom Attributes
Basic Properties
Trading Properties
Product Description
Custom 5-Axis CNC Machined Aluminum Bracket for Robotic Gripper Assembly
Quick detail
This custom aluminium robotic gripper bracket is fabricated by 5-axis CNC milling. It adopts a hollow frame structure with complex cutouts, slotted holes and precision threaded holes. The surface is bead blasted for uniform matte finish. Strict parallelism and position tolerance requirements ensure stable installation for robot end effector.
Product description
This frame-type aluminium bracket acts as the core supporting structure for robotic gripper end effector. The hollow cutout design reduces overall weight while retaining high structural rigidity, which helps lower robot load and improve dynamic response speed. The complex multi-plane 3D contour can only be completed in single clamping on 5-axis CNC equipment. Our engineering team optimized the material removal sequence during DFM review to avoid warping caused by uneven stress release. After machining, bead blasting treatment removes tool marks and improves surface uniformity. Key features are fully inspected by CMM before shipment to guarantee interchangeability in batch assembly.
Custom parameter table
| Parameter | Value |
|---|---|
| Processing Type | 5-axis CNC Milling, Drilling, Tapping, Deburring, Bead Blasting |
| Available Material | Aluminum 6061-T6, 7075-T6 |
| Tolerance | ±0.01 mm |
| Surface Finish | Bead blasted matte aluminium surface |
| Drawing Format | 2D PDF / CAD, 3D STEP / IGES |
| Application Scenario | Robot end effector, robotic gripper, automation pick & place module |
| Inspection Method | CMM, Micrometer, Thread Gauge, Height Gauge |
| Production Range | Prototype, small batch & mass production |
Product features
- Hollow frame lightweight design, reduce robot moving load without sacrificing rigidity
- 5-axis one-time clamping machining, ensure high precision of multi-angle mounting surfaces
- Bead blasted matte surface, anti-glare and improve coating adhesion if further anodizing needed
- Precision slotted holes for fine position adjustment during on-site assembly
- Fully customizable outline, cutout layout and hole positions based on customer 3D drawings
Product application
Robotic End Effector / Gripper
Main support frame for robot gripper. Lightweight & high rigidity enables fast pick-and-place movement in automated assembly line.
Automation Pick & Place Module
Used as mounting bracket for linear actuator and clamping jaws, allows position fine-tuning via long slotted holes.
FAQ
Q1: Can you do hard anodizing on this bead blasted aluminium bracket?
A1: Yes, hard anodizing is available for higher wear resistance upon request.
Q2: What is the weight reduction advantage of this hollow frame design?
A2: Hollow cutouts remove redundant material, reduce moving weight by around 30% while maintaining structural stiffness for high-speed robotic motion.
Q3: Can you produce custom robotic brackets with stainless steel material?
A3: Yes, we can machine stainless steel brackets, but machining time and cost will be higher.
Q4: Are batch parts fully interchangeable?
A4: All critical dimensions are checked by CMM, batch parts are fully interchangeable for assembly.
Q5: What is the sample lead time?
A5: 7–11 working days after drawing confirmation, depends on machining complexity.
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JThey delivered exactly that. No loose machining swarf in internal channels, passivation per ASTM F86 after machining, and lot numbers laser-marked on each piece so we can trace back to the raw material batch. Our QA team didn't send a single part back. Pricing is mid-range not the cheapest quote we got, but the documentation saved us more in internal inspection time than the premium cost.
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MUsed for a project and they look great
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EThe custom dense‑fin aluminum heat sinks work well on our new‑energy control modules. Fin deformation rate is very low after CNC milling. Thermal performance matches our lab test expectation.
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