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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Prediction of Surface Quality Based on the Non-Linear Vibrations in Orthogonal Cutting Process: Time Domain Modeling
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Prediction of Surface Quality Based on the Non-Linear Vibrations in Orthogonal Cutting Process: Time Domain Modeling

机译:正交切削过程中基于非线性振动的表面质量预测:时域建模

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摘要

This work presents an analysis of relationships between the non-linear vibrations in machining and the machined surface quality from an analytical model based on a predictive machining theory. In order to examine the influences of tool oscillations, several non-linear mechanisms were considered. Additionally, to solve the non-linear problem, a new computational strategy was developed. The resolution algorithm significantly reduces the computational times and makes the iterative approach more stable. In the present approach, the coupling between the tool oscillations and (i) the regenerative effect due to the variation of the uncut chip thickness between two successive passes and/or when the tool leaves the work (i.e., the tool disengagement from the cut), (ii) the friction conditions at the tool–chip interface, and (iii) the tool rake angle was considered. A parametric study was presented. The correlation between the surface quality, the cutting speed, the tool rake angle, and the friction coefficient was analyzed. The results show that, during tool vibrations, the arithmetic mean deviation of the waviness profile is highly non-linear with respect to the cutting conditions, and the model can be useful for selecting optimal cutting conditions.
机译:这项工作提出了基于预测加工理论的分析模型,对加工中的非线性振动与加工表面质量之间的关系进行了分析。为了检查工具振荡的影响,考虑了几种非线性机制。另外,为了解决非线性问题,开发了一种新的计算策略。解析算法大大减少了计算时间,并使迭代方法更加稳定。在本方法中,由于两次连续走刀之间未切削切屑厚度的变化和/或当刀具离开工件时(即刀具从切削中脱离),刀具振荡之间的耦合和(i)再生效应。 ,(ii)刀具与切屑界面的摩擦条件,以及(iii)考虑了刀具前角。提出了参数研究。分析了表面质量,切削速度,刀具前角和摩擦系数之间的相关性。结果表明,在刀具振动期间,波纹度轮廓的算术平均偏差相对于切削条件是高度非线性的,该模型可用于选择最佳切削条件。

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