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Modelling and simulation of surface topography in ultra-precision diamond turning

机译:超精密金刚石车削表面形貌的建模与仿真

摘要

This paper describes a model for the simulation of surface topography in ultra-precision diamond turning. In the model, the kinematics of the diamond turning process is characterized by machining parameters, the tool geometry as well as the relative motion between the tool and the workpiece. The topography of the machined surface is generated by a linear mapping of the predicted surface roughness profiles on the surface elements of a cross lattice. A series of cutting experiments was carried out. Good correlation is found between the simulated topography and the three-dimensional topography obtained from the optical interferometer. The model can be used for the optimization of the diamond turning process without the need for costly trial-and-error cutting tests. With the use of equi-contour mapping techniques, the model can also help to identify surface features like traces of tool motion and surface waviness. Potential applications of the modelling technique to other processes and tool and workpiece combinations are also discussed.
机译:本文介绍了一种用于在超精密金刚石车削中模拟表面形貌的模型。在模型中,金刚石车削过程的运动学特征在于加工参数,刀具几何形状以及刀具与工件之间的相对运动。加工表面的形貌是通过将预测的表面粗糙度轮廓线性映射到交叉晶格的表面元素上而生成的。进行了一系列切割实验。在模拟的地形和从光学干涉仪获得的三维地形之间发现了良好的相关性。该模型可用于优化金刚石车削工艺,而无需进行昂贵的反复试验。通过使用等高线图技术,该模型还可以帮助识别表面特征,例如刀具运动轨迹和表面波纹度。还讨论了建模技术在其他过程以及工具和工件组合中的潜在应用。

著录项

  • 作者

    Cheung CF; Lee WB;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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