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Fast chatter stability prediction for variable helix milling tools

机译:可变螺旋铣刀的快速颤振稳定性预测

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摘要

Regenerative chatter is a well-known form of self-excited vibration that limits the productivity of machining operations, in particular for milling. Variable helix tools have been previously proposed as a means of avoiding regenerative chatter, and although recent work has analysed the stability of such tools there has not always been a strong agreement with experimentally observed behaviour. Furthermore, the analysis of variable helix tool stability can be tedious and numerically slow, compared to standard tools. Consequently it has been difficult to gain insight into the potential advantages of variable helix tools. The present work attempts to address these issues, by first developing an efficient approach to variable helix tool stability based upon the Laplace transform. Then, this new analysis method is used to demonstrate the importance of multi-frequency effects and nonlinear cutting stiffness. The work suggests that whilst variable-helix tools can have more operating regions that are stable, un-modelled behaviour (such as nonlinearity and multi-frequency effects) can have a critical influence on the accuracy of model predictions.
机译:再生颤振是一种众所周知的自激振动形式,它会限制加工操作(尤其是铣削)的生产率。先前已经提出了可变螺旋工具作为避免再生颤动的一种手段,尽管最近的工作已经分析了这种工具的稳定性,但并不总是与实验观察到的行为有很强的一致性。此外,与标准工具相比,可变螺旋工具稳定性的分析可能很繁琐且数值上较慢。因此,很难深入了解可变螺旋工具的潜在优势。本工作试图通过首先开发一种基于拉普拉斯变换的可变螺旋刀具稳定性的有效方法来解决这些问题。然后,使用这种新的分析方法来证明多频效应和非线性切削刚度的重要性。这项工作表明,尽管可变螺旋工具可以具有更多的稳定工作区域,但未建模的行为(例如非线性和多频效应)可能会对模型预测的准确性产生关键影响。

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