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Identification and modeling of process damping in turning and milling using a new approach

机译:使用新方法识别车削和铣削中的过程阻尼并进行建模

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摘要

Process damping can be a significant source of increased stability in machining particularly at low cutting speeds. However, it is usually ignored in chatter analysis as there is no model available to estimate process damping coefficients. In this study, a practical identification and modeling method is presented where process damping coefficients are obtained from chatter tests. The method is generalized by determining the indentation force coefficient responsible for the process damping through energy analysis. This coefficient is then used for process damping and the stability limit prediction in different cases, and predictions are verified by time domain simulations and experimental results.
机译:过程阻尼可能是增加机械加工稳定性的重要原因,特别是在低切削速度下。但是,由于没有模型可用来估计过程阻尼系数,因此在颤振分析中通常会忽略它。在这项研究中,提出了一种实用的识别和建模方法,其中从颤振测试中获得过程阻尼系数。通过确定通过能量分析来确定过程阻尼的压入力系数,可以概括该方法。然后将该系数用于过程阻尼和不同情况下的稳定性极限预测,并通过时域仿真和实验结果验证了预测。

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