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A dynamic surface topography model for the prediction of NANO-surface generation in ultra-precision machining

机译:用于预测超精密加工中纳米表面生成的动态表面形貌模型

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摘要

Materials induced vibration has its origin in the variation of micro-cutting forces caused by the changing crystallographic orientation of the material being cut. It is a kind of self-excited vibration which is inherent in a cutting system for crystalline materials. The captioned vibration results in a local variation of surface roughness of a diamond turned surface. In this paper, a dynamic surface topography model is proposed to predict the materials induced vibration and its effect on the surface generation in ultra-precision machining. The model takes into account the effect of machining parameters, the tool geometry, the relative tool-work motion as well as the crystallographic orientation of the materials being cut. A series of cutting experiments was performed to verify the performance of the model and good correlation has been found between the experimental and simulation results.
机译:材料引起的振动的起源是由于被切割材料的晶体学方向发生变化而引起的微切割力的变化。这是一种自激振动,是晶体材料切割系统固有的一种振动。带字幕的振动导致金刚石车削表面的表面粗糙度局部变化。本文提出了一种动态表面形貌模型,以预测材料引起的振动及其对超精密加工中表面生成的影响。该模型考虑了加工参数,刀具几何形状,相对刀具工作运动以及被切割材料的晶体学取向的影响。进行了一系列切割实验以验证模型的性能,并且在实验和仿真结果之间找到了良好的相关性。

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