Fine Plunge EDM Electrode Dressing and Orbiting Cycles

Multi-axis CNC orbiting sinker EDM cycles utilizing high-density copper-tungsten and graphite electrodes for deep blind blind-slot cavities.

Engineering Specifications & Parameters

Primary Alloys H13, Nak80, Titanium, Stavax
Process Method CNC Plunge Sinker EDM
Kinematic Control CNC 3D Vector Orbiting Generator
Surface Finish (Ra) Ra 0.1 μm
Dimensional Tolerance +/-0.002 mm

Manufacturing Overview & Engineering Principles

Fine Plunge EDM Electrode Dressing and Orbiting Cycles is an advanced machining methodology utilized by UCAN ROBOT to achieve high-precision geometries, rigorous dimensional stability, and verified surface finishes across demanding industrial production runs.

Process Specifications & Technical Controls

  • Process Classification: CNC Plunge Sinker EDM.
  • Achievable Tolerances: Maintained consistently within +/-0.002 mm under continuous CNC cycle monitoring.
  • Surface Finish Capability: Delivers surface roughness down to Ra 0.1 μm, eliminating or minimizing manual secondary benchwork.
  • Compatible Materials: Optimized for precision cutting of H13, Nak80, Titanium, Stavax.
  • Kinematic Setup: Employs CNC 3D Vector Orbiting Generator to eliminate cutting vibration, tool chatter, and thermal drift.

Explore our technical equipment capabilities in 5-Axis CNC Milling and read our guidelines on Precision Machining Quality Control.

Frequently Asked Questions

What dimensional accuracy is standard for Fine Plunge EDM Electrode Dressing and Orbiting Cycles?

UCAN ROBOT reliably maintains tolerances within +/-0.002 mm using temperature-compensated machine tools and in-process laser tool setting.

What materials yield the best results with this process?

This process is engineered for H13, Nak80, Titanium, Stavax, providing clean chip evacuation and burr-free edges.