首页> 外文会议>American Society of Mechanical Engineers International Mechanical Engineering Congress and Exposition >A METHODOLOGY TO DETERMINE WORK MATERIAL FLOW STRESS AND TOOL-CHIP INTERFACIAL FRICTION PROPERTIES BY USING ANALYSIS OF MACHINING
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A METHODOLOGY TO DETERMINE WORK MATERIAL FLOW STRESS AND TOOL-CHIP INTERFACIAL FRICTION PROPERTIES BY USING ANALYSIS OF MACHINING

机译:一种方法,通过使用加工分析来确定工作材料流量应力和工具芯片界面摩擦性能的方法

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摘要

In this paper, we develop a methodology to determine flow stress at the machining regimes and friction characteristics at the tool-chip interface from the results of orthogonal cutting tests. We utilize metal cutting analysis originally developed by late Oxley and present some improvements. We also evaluate several temperature models in calculating the average temperatures at primary and secondary deformation zones and present comparisons with the experimental data obtained for AISI 1045 steel through assessment of machining models (AMM) activity. The proposed methodology utilizes measured forces and chip thickness obtained through a basic orthogonal cutting test. We conveniently determine work material flow stress at the primary deformation zone and the interfacial friction characteristics along tool rake face. Calculated friction characteristics include parameters of the normal and frictional stress distributions on the rake face. Determined flow stress data from orthogonal cutting tests is combined with the flow stress measured through split-hopkinson pressure bar (SHPB) tests and the Johnson-Cook work material model is obtained. Therefore, with this methodology, we extend the applicability of Johnson-Cook work material model to machining regimes.
机译:在本文中,我们开发了一种方法,以确定加工制度的流量应力以及从正交切削测试的结果的工具芯片界面处的摩擦特性。我们利用最初由晚氧克利开发的金属切割分析,并提出了一些改进。我们还评估了几种温度模型,用于计算初级和二次变形区域的平均温度,并通过评估加工模型(AMM)活性,对AISI 1045钢的实验数据进行比较。所提出的方法利用通过基本正交切削测试获得的测量力和芯片厚度。我们方便地确定主变形区域的工作材料流量应力和沿工具耙面的界面摩擦特性。计算的摩擦特性包括耙面上的正常和摩擦应力分布的参数。来自正交切削测试的测定的流量应力数据与通过分流霍普金森压力棒(SHPB)测试测量的流量应力结合,获得了Johnson-Cook工作材料模型。因此,通过这种方法,我们将Johnson-Cook工作材料模型的适用性扩展到加工制度。

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