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首页> 外文期刊>International Journal of Material Forming >Contact and friction analysis at tool-chip interface to high-speed machining
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Contact and friction analysis at tool-chip interface to high-speed machining

机译:刀具和芯片接口的接触和摩擦分析,可实现高速加工

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摘要

Numerical approaches to high-speed machining are necessary to increase productivity and to optimise tool wear and residual stresses. In order to apply such approaches, the rheological behaviour and the friction model have to be correctly determined. The existing numerical approaches that are used with current friction models do not generate good correlations of the process variables, such as the cutting forces or toolchip contact length. This paper proposes a new approach for characterizing the friction behaviour at the toolchip interface in the zone near the cutting edge. An experimental device was designed to simulate the friction behaviour at the tool-chip interface. During the upsetting-sliding test conducted on this devise, the indenter rubs the specimen with a constant velocity, generating a residual friction track. The contact pressure and friction coefficient are determined from the test’s numerical model and are then used to identify the friction data according to the interface temperature and the sliding velocity. These initial findings can be further developed for implementation in FEA machining models in order to increase productivity.
机译:为了提高生产率并优化刀具磨损和残余应力,必须采用数值方法进行高速加工。为了应用这些方法,必须正确确定流变行为和摩擦模型。与当前摩擦模型一起使用的现有数值方法无法生成过程变量的良好相关性,例如切削力或工具芯片接触长度。本文提出了一种新的方法,用于表征切削刃附近区域中工具芯片界面处的摩擦行为。设计了一种实验设备来模拟工具-芯片界面处的摩擦行为。在此装置进行的setting粗滑动测试期间,压头以恒定速度摩擦试样,从而产生残留的摩擦轨迹。根据测试的数值模型确定接触压力和摩擦系数,然后根据界面温度和滑动速度将其用于识别摩擦数据。这些初步发现可以进一步发展,以便在FEA加工模型中实施,以提高生产率。

著录项

  • 来源
    《International Journal of Material Forming》 |2008年第s1期|1407-1410|共4页
  • 作者单位

    LAMIH UMR 8530 Université de Valenciennes et du Hainaut Cambrésis F-59313 Valenciennes Cedex 9 France;

    LAMIH UMR 8530 Université de Valenciennes et du Hainaut Cambrésis F-59313 Valenciennes Cedex 9 France;

    LAMIH UMR 8530 Université de Valenciennes et du Hainaut Cambrésis F-59313 Valenciennes Cedex 9 France;

    LTN UMR 6607 Ecole polytechnique de Nantes Rue Christian Pauc BP 50609 44306 Nantes Cedex 3 France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Orthogonal cutting; friction model; tool-chip interface;

    机译:正交切削;摩擦模型;工具-芯片接口;

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