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A novel surface quality evaluation method in ultra-precision raster milling using cutting chips

机译:使用切削屑的超精密光栅铣削中一种新的表面质量评估方法

摘要

Although online surface quality evaluation is important in ultra-precision machining technologies, very little research has been reported on the topic. In this paper, cutting chips were employed to evaluate machined surface quality online under the occurrence of tool wear in ultra-precision raster milling. Cutting chips were collected and examined by a 3D scanning electron microscope. The inspected cross-sectional shape of 'ridges' imprinted by the tool fracture was approximated into two geometric elements so that it could be determined by a mathematical model. The geometric elements for every ridge were assembled into a virtual cutting edge so as to rebuild the machined surface. A mathematical model was established to realize the rebuilt machined surface and calculate the surface roughness under the consideration of tool fractures effects. The theoretical and experimental results show that the ridges imprinted on the machined surface can be predicted by examining a section of the collected cutting chips. It is interesting to note that the quality of the machined surface is reflected in the location and the height of ridges. This demonstrates that the online surface quality evaluation using cutting chips is a novel method as compared to conventional methods, since it can evaluate the machined surface and simulate the machined surface topography without the need to stop the cutting process.
机译:尽管在线表面质量评估在超精密加工技术中很重要,但有关该主题的研究很少。本文采用切削屑在线评估超精密光栅铣削中刀具磨损情况下的加工表面质量。收集切屑并通过3D扫描电子显微镜检查。被检查的由工具断裂引起的“脊”的横截面形状近似为两个几何元素,因此可以通过数学模型确定。每个脊的几何元素被组装成一个虚拟的切削刃,以便重建加工表面。建立了数学模型,以实现重建的加工表面并在考虑刀具断裂影响的情况下计算表面粗糙度。理论和实验结果表明,可以通过检查收集的切屑的一部分来预测刻在加工表面上的凸脊。有趣的是,加工表面的质量反映在凸脊的位置和高度上。这表明与常规方法相比,使用切削屑进行在线表面质量评估是一种新颖的方法,因为它可以评估加工的表面并模拟加工的表面形貌,而无需停止切削过程。

著录项

  • 作者

    Zhang G; To S;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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