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Analytical models for high performance milling. Part I: cutting forces, structural deformations and tolerance integrity

机译:高性能铣削的分析模型。第一部分:切削力,结构变形和公差完整性

摘要

Milling is one of the most common manufacturing processes in industry. Despite recent advances in machining technology, productivity in milling is usually reduced due to the process limitations such as high cutting forces and stability. If milling conditions are not selected properly, the process may result in violations of machine limitations and part quality, or reduced productivity. The usual practice in machining operations is to use experience-based selection of cutting parameters which may not yield optimum conditions. In this two-part paper, milling force, part and tool deection, form error and stability models are presented. These methods can be used to check the process constraints as well as optimal selection of the cutting conditions for high performance milling. The use of the models in optimizing the process variables such as feed, depth of cut and spindle speed are demonstrated by simulations and experiments.
机译:铣削是工业上最常见的制造工艺之一。尽管加工技术方面有最新进展,但由于诸如高切削力和稳定性之类的工艺限制,通常会降低铣削的生产率。如果未正确选择铣削条件,则该过程可能会违反机器限制和零件质量,或降低生产率。机加工操作中的常规做法是使用基于经验的切削参数选择,这些参数可能无法产生最佳条件。在这个分为两部分的论文中,提出了铣削力,零件和刀具的变形,形状误差和稳定性模型。这些方法可用于检查工艺约束以及用于高性能铣削的切削条件的最佳选择。通过仿真和实验证明了该模型在优化工艺变量(例如进给,切削深度和主轴转速)中的用途。

著录项

  • 作者

    Budak Erhan;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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