Ultrasonic Machining of Tungsten Carbide

D. Goetze
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Abstract

An electronically driven and controlled magnetostrictive transducer is used in conjunction with a suspended abrasive to machine hard, brittle materials such as ceramics and the carbide metals. The transducer has been constructed especially to supply high amplitude vibrations at the surface being machined. Data taken indicate that certain compromises must be made relative to cutting speed and tool wear. The effects of other variables such as vibration amplitude and abrasive size have been optimized for machining tungsten carbide, but no conclusions have yet been reached regarding the mechanism of ultrasonic machining.
碳化钨的超声加工
电子驱动和控制磁致伸缩换能器与悬浮磨料一起使用,以加工硬脆材料,如陶瓷和碳化物金属。该换能器是专门为在被加工表面提供高振幅振动而设计的。所取得的数据表明,必须在切削速度和刀具磨损方面作出某些妥协。虽然优化了振动幅度和磨料尺寸等其他变量对加工碳化钨的影响,但尚未得出超声加工机理的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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