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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A reliable method for predicting serrated chip formation in high-speed cutting: analysis and experimental verification
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A reliable method for predicting serrated chip formation in high-speed cutting: analysis and experimental verification

机译:一种预测高速切削中锯齿状切屑形成的可靠方法:分析和实验验证

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摘要

Serrated chip formation influences almost every aspect of a high-speed cutting (HSC) process. This paper aims to develop a reliable method to accurately predict such chip formation processes. To this end, a systematic finite element analysis was carried out and a series of HSC experiments were conducted on a heat treated AISI 1045 steel. It was found that the integrative use of the Johnson-Cook thermal-viscoplastic constitutive equation, Johnson-Cook damage criterion for chip separation, and the modified Zorev's friction model can precisely predict the serrated chip formation in HSC without artificial assumptions. This advancement has removed the major barrier in the current machining investigations by numerical simulation. The present study also found that the tool rake angle has a significant effect on serrated chip formation. As the rake angle increases, the chip sawtooth degree and cutting forces decrease, but the chip segmentation frequency increases.
机译:锯齿状切屑的形成几乎影响高速切削(HSC)工艺的每个方面。本文旨在开发一种可靠的方法来准确预测这种切屑形成过程。为此,进行了系统的有限元分析,并对热处理过的AISI 1045钢进行了一系列的HSC实验。研究发现,Johnson-Cook热粘塑性本构方程,Johnson-Cook损伤准则用于切屑分离以及改进的Zorev摩擦模型的综合使用可以精确地预测HSC中锯齿状切屑的形成,而无需人工假设。这一进步消除了当前通过数值模拟进行机械加工研究的主要障碍。本研究还发现刀具前角对锯齿状切屑的形成有重要影响。随着前角的增加,切屑的锯齿度和切削力降低,但切屑的切分频率增加。

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