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Experiments Study of Ultrasonical Combined Electrical Micromachining Micro-structures on Working Surface of Friction Units

机译:摩擦单元工作表面超声组合电微加工微观结构的实验研究

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For manufacturing micro-structures on working surface of friction units, the ultrosonical combined electrical micromachining is advanced as a new technology. The ultrosonical combined electrical micro-machining system is built and improved,which machining parameters can be adjusted in a wide ranges. The micro USM & EDM (ultrosonical combined electro-discharge micro-machining) and micro USM & ECM (ultrosonical combined electrochemical micro-machining) can be achieved with the micro-machining system. The round section micro electrodes in different sizes are manufactured by combined electro-discharge micro-machining. The micro-machining tests are carried. The process properties of the combined electrical machining are analyzed and studied. The possibility and the technology advantages have been proved, that is the good machining precision, lower cost and high efficiency. The friction characteristics of surface with round micro-structures are analyzed. The friction tests are carried. It is verified that friction surfaces with regular profiles round micro-pits have lest friction coefficient and wear. It is very helpful for improving the friction performances and prolonging working life of important friction units.
机译:为了在摩擦单元的工作表面上制造微结构,超声组合电微加工作为一种新技术得到了发展。建立并完善了超声组合电微加工系统,可在较大范围内调节加工参数。可以通过微加工系统实现微型USM和EDM(超声组合放电微加工)和微型USM和ECM(超声组合电化学微加工)。通过组合的放电微加工来制造不同尺寸的圆形截面微电极。进行微加工测试。分析并研究了组合电动加工的工艺特性。已经证明了这种可能性和技术优势,即良好的加工精度,较低的成本和较高的效率。分析了具有圆形微结构的表面的摩擦特性。进行了摩擦测试。证实具有规则轮廓的圆形微坑的摩擦表面具有最小的摩擦系数和磨损。这对于改善重要的摩擦装置的摩擦性能和延长使用寿命非常有帮助。

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