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Finite Element Modeling of Chip Formation in the Domain of Negative Rake Angle Cutting

机译:负前角切削领域切屑形成的有限元建模

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摘要

A thermo-elastic-plastic finite element modeling of orthogonal cutting with a large negative rake angle has been developed to understand the mechanism and thermal aspects of grinding. A stagnant chip material ahead of the tool tip, which is always observed with large negative rake angles, is assumed to act like a stable built-up edge. Serrated chips one of typical shapes of chips observed in single grain grinding experiment, form when analyzing the machining of 0.93%C carbon steel SK-5 with a rake angle of minus forty five or minus sixty degrees. There appear high and low temperature zones alternately according to severe and mild shear in the primary shear zone respectively. The shapes of chips depend strongly on the cutting speed and undeformed chip thickness; as the cutting speed or the undeformed chip thickness decreases, chip shape changes from a serrated type to a bulging one to a wavy or flow type. Therefore, there exists the critical cutting speed over which a chip can form and flow along a rake face for a given large negative rake angle and undeformed chip thickness.
机译:已经开发了具有大负前角的正交切削的热弹塑性有限元模型,以了解磨削的机理和热学方面。刀具尖端前方停滞的切屑材料(通常以较大的前角负角观察到)被认为像稳定的堆积边缘。锯齿状切屑是单晶粒磨削实验中观察到的典型切屑形状之一,是在分析加工角度为负45度或负60度的0.93%C碳钢SK-5时形成的。一次剪切区分别根据严重剪切和中等剪切交替出现高温区和低温区。切屑的形状在很大程度上取决于切削速度和未变形的切屑厚度。当切削速度或未变形的切屑厚度减小时,切屑的形状从锯齿形变为鼓出形,再到波状或流动形。因此,对于给定的大前角和未变形的切屑厚度,存在着一种临界切削速度,在该速度下切屑可以形成并沿着前刀面流动。

著录项

  • 来源
    《Journal of engineering materials and technology》 |2003年第3期|p. 324-332|共9页
  • 作者

    Y. Ohbuchi; T. Obikawa;

  • 作者单位

    Research Associate Department of Mechanical Engineering and Materials Science, Kumamoto University, Kurokami, Kumamoto, 860-8555, Japan;

    Department of Mechanical and Control Engineering, Tokyo Institute of Technology, O-Okayama, Meguro-ku, Tokyo, 152-8552, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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