Automatic upper and lower correction systems clamp, detect, and press aluminum alloy wheels to fix end face and radial deformation.
CAM-based trajectory planning and force feedback let robots deburr accurately despite limited arm stiffness and absolute accuracy.
Sensors and synchronized cutters align to actual wheel burr centers, removing flange, rim, and riser burrs with higher roundness and consistency.
Customizing tool contact point height helps robot machining keep feed rates stable, avoid collisions, and improve accuracy on free-form workpieces.
A bipolar electrolytic process colors opposite sides of garment accessories differently, avoiding masking steps and lowering plating cost.
Servo-driven rotary clamping aligns wheel blank flashes with milling tools to automate removal, improve positioning accuracy, and cut manual labor.
Multiple gas jets aimed on different axes remove burrs more consistently during cutting or slitting while clearing debris from the material edge.
A flexible cover and purge flow protect turbomachine cooling features during abrasive blasting by sealing cavities and displacing entrapped media.
Relief-notch forming directly shapes thin turbine blade leading edges, reducing chatter and deflection while improving aerodynamic accuracy.