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Surface-roughness Improvement in Ultrasonically Assisted Turning

机译:超声辅助车削表面粗糙度的改善

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Ultrasonically assisted machining is a hybrid technique based on superimposition of ultrasonic vibration on a movement of a cutting tool. Such vibration with relatively small amplitude – below 20 microns – changes dramatically the response of a machined material to a cutting process. As a result, a significant – in excess of 80% in turning of aerospace superalloys –reduction of average cutting forces is observed together with improvement of surface roughness. The paper presents results of analysis of the effect of ultrasonically assisted turning (UAT) on surface roughness (using a broad range of parameters) for a broad range of metals and alloys – from copper, aluminium and stainless steel to Ni- and Ti-based alloys. The effect of machining parameters for both conventional turning and UAT was investigated to provide an optimum range for each material and its relation to surface roughness.
机译:超声辅助加工是一种基于超声振动叠加在切削工具运动上的混合技术。这种幅度相对较小(小于20微米)的振动会极大地改变加工材料对切割过程的响应。结果,观察到显着的切削力降低(超过80%的航空航天高温合金)以及表面粗糙度的改善。本文介绍了分析超声辅助车削(UAT)对从铜,铝和不锈钢到镍和钛基的各种金属和合金(使用各种参数)的表面粗糙度的影响的分析结果。合金。研究了常规车削和UAT加工参数的影响,以为每种材料提供最佳范围及其与表面粗糙度的关系。

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