Precision machining is realized by using precision machine tools and some Precision Machined Parts, precision measuring tools and gauges required in the process of processing under strictly controlled environmental conditions. The machining precision reaches and exceeds 0.1 micron, which is called super precision machining.
The process effect of precision machining is:
The geometric shape and mutual position precision of the parts reach the micron or angular second level.
The boundary or characteristic dimension tolerance of parliamentary parts is below micron.
The surface roughness (average surface roughness difference) of the torque part is less than 0.1 micron.
Automation interparts can meet the requirements of combining power;
Some parts also meet the requirements of precise mechanics or other physical characteristics.
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