We successfully manufactured a precision tungsten carbide spring claw gripper component using single-pass slow-speed Wire EDM (WEDM) unibody construction — the entire gripper profile, internal cutouts, and thin-wall elastic arms all wire-cut in a single operation with no welding, no bending, and no secondary joining. This advanced manufacturing approach achieves micron-level dimensional tolerances with uniform elastic arm thickness for consistent spring force, while the inherent precision of wire EDM enables tight internal clearance holes, micro-gaps, and sharp corner features unattainable by conventional milling. The finished component is surface-treated with polishing/passivation to remove wire marks and burrs, ensuring scratch-free handling of sensitive workpieces.
| Project Name | Tungsten Carbide EDM Spring Claw Gripper |
| Key Metric | Specification |
| Dimensional Tolerance | ±0.005mm (critical gripper features) |
| Material | Tungsten carbide (cemented carbide) |
| Elastic Arm Thickness Tolerance | ±0.005mm (uniform thickness for consistent spring force) |
| Construction Method | Single-pass WEDM unibody — no welds, no bending |
| Surface Condition | Natural tungsten carbide matte finish — no plating (passivation/DLC coating optional) |
| Surface Finish | Polished/ passivated — wire marks and burrs removed |
| Machining Process | Slow-speed wire EDM (single-pass unibody cutting) |
Each component underwent comprehensive inspection using precision CMM measurement for dimensional accuracy (±0.005mm on critical gripper features), optical/ laser measurement for elastic arm thickness uniformity verification, spring force testing for gripping consistency validation, and surface quality inspection to confirm wire mark/burr removal.
This solution demonstrates our expertise in ultra-precision wire EDM manufacturing for complex tungsten carbide components, ideal for:
✓ Automated assembly grippers ✓ Medical device handling tools ✓ Precision inspection fixturing ✓ Semiconductor wafer handling ✓ Watchmaking/ micro-component handling
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