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Analytical and experimental investigation of rake contact and friction behavior in metal cutting

机译:金属切削中前刀接触和摩擦行为的分析和实验研究

摘要

In this study, the friction behavior in metal cutting operations is analyzed using a thermomechanical cutting process model that represents the contact on the rake face by sticking and sliding regions. The relationship between the sliding and the overall, i.e. apparent, friction coefficients are analyzed quantitatively, and verified experimentally. The sliding friction coefficient is identified for different workpiece-tool couples using cutting and non-cutting tests. In addition, the effect of the total, sticking and sliding contact lengths on the cutting mechanics is investigated. The effects of cutting conditions on the friction coefficients and contact lengths are analyzed. It is shown that the total contact length on the rake face is 3-5 times the feed rate. It is observed that the length of the sliding contact strongly depends on the cutting speed. For high cutting speeds the contact is mainly sliding whereas the sticking zone can be up to 30% of the total contact at low speeds. From the model predictions and measurements it can be concluded that the sticking contact length is less than 15% for most practical operations. Furthermore, it is also demonstrated that the true representation of the friction behavior in metal cutting operations should involve both sticking and sliding regions on the rake face for accurate predictions. Although the main findings of this study have been observed before, the main contribution of the current work is the quantitative analysis using an analytical model. Therefore, the results presented in this study can help to understand and model the friction in metal cutting.
机译:在这项研究中,使用热机械切削过程模型分析了金属切削操作中的摩擦行为,该模型通过粘着和滑动区域来表示前刀面上的接触。滑动系数和整体系数之间的关系,即表观摩擦系数被定量分析,并通过实验进行验证。使用切削和非切削测试来确定不同工件对的滑动摩擦系数。此外,还研究了总长度,粘着长度和滑动接触长度对切削力学的影响。分析了切削条件对摩擦系数和接触长度的影响。结果表明,前刀面的总接触长度是进给速度的3-5倍。可以看出,滑动触点的长度很大程度上取决于切削速度。对于高切削速度,触点主要是滑动的,而在低速时,粘着区最多可占总触点的30%。从模型预测和测量中可以得出结论,对于大多数实际操作,粘着接触长度小于15%。此外,还证明了金属切削操作中摩擦行为的真实表示应包括前刀面的粘着和滑动区域,以进行准确的预测。尽管以前已经观察到了本研究的主要发现,但是当前工作的主要贡献是使用分析模型进行的定量分析。因此,本研究提出的结果可以帮助理解和建模金属切削中的摩擦。

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