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A theoretical and experimental investigation into multimode tool vibration with surface generation in ultra-precision diamond turning

机译:超精密金刚石车削中具有表面生成的多模刀具振动的理论和实验研究

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摘要

In ultra-precision diamond turning (UPDT), tool's high frequency vibration is natural mechanism influencing nanometric surface roughness of machined components. Its first mode high frequency vibration has been overemphasized. However, its multimode high frequency vibration (MHFTV) has not been reported. In the paper, the MHFTV and its effects on surface generation in UPDT are firstly studied. The experimental and theoretical results verify that (i) diamond tool naturally possesses multimode high frequencies, i.e. one sub-high frequency (SHF) for the tool shank tip, one high frequency (HF) for the tool tip, and one ultrahigh frequency (UHF) for the diamond tip; (ii) dampers cause the variation of tool's multimode high frequencies, under which the MHFTV together produces non-uniform zebra-stripe-like patterns at a machined surface; and (iii) cutting force has a linear relationship with and tool's stiffness has a reverse proportion to the amplitude of the MHFTV to influence surface generation, which can be used to improve surface quality.
机译:在超精密金刚石车削(UPDT)中,刀具的高频振动是影响加工零件纳米级表面粗糙度的自然机制。它的第一种模式是高频振动。但是,尚未报道其多模高频振动(MHFTV)。本文首先研究了MHFTV及其对UPDT中表面生成的影响。实验和理论结果验证了(i)金刚石工具自然具有多模高频,即工具柄尖端为一个亚高频(SHF),工具尖端为一个高频(HF),以及一个超高频(UHF) )用于钻石尖端; (ii)阻尼器引起工具的多模高频变化,在该高频下,HFVTV会在加工表面上共同产生不均匀的斑纹条纹状图案; (iii)切削力与MHFTV的振幅成线性关系,并且工具的刚度与MHFTV的振幅成反比,从而影响表面生成,可用于改善表面质量。

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