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Performance-Based Predictive Models and Optimization Methods for Turning Operations and Applications: Part 2-Assessment of Chip Forms/Chip Breakability

机译:基于性能的车削操作和应用的预测模型和优化方法:第2部分:切屑形式/切屑断裂性的评估

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This paper presents recent developments in chip control research and provides major applications in turning operations involving the use of complex grooved tool inserts. On the basis of the basic chip morphology presented by Nakayama (1984), four major parameters contributing to complex 3-D chip curl are identified: chip back-flow, chip up-curl, chip side-flow, and chip side-curl. A summary of past research in each of these four categories is presented as well as a description of an attempt to combine these parameters into one readily measured variable. An analysis of cyclic chip formation is then presented with experimental evidence from high-speed filming of the chip curling and breaking processes. The most commonly known "chip chart" technique is then described. The paper concludes with details of an attempt to develop a computer-aided process planning system incorporating a predictive capability for chip breakability in turning operations.
机译:本文介绍了切屑控制研究的最新进展,并提供了涉及复杂凹槽工具刀片的车削操作的主要应用。根据Nakayama(1984)提出的基本切屑形态,确定了导致复杂3-D切屑卷曲的四个主要参数:切屑回流,切屑向上卷曲,切屑侧向流动和切屑侧向卷曲。介绍了过去对这四个类别的研究的摘要,并描述了将这些参数组合为一个易于测量的变量的尝试。然后对高速切屑卷曲和断裂过程的高速成膜进行实验证据,从而对循环切屑形成进行了分析。然后描述最公知的“芯片图”技术。本文以开发计算机辅助过程计划系统的尝试的详细信息结尾,该系统结合了具有预测能力的车削操作中的断屑能力。

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