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Computational Stability Analysis of Chatter in Turning

机译:转弯颤振的计算稳定性分析

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摘要

Machine tool chatter is one of the major constraints that limits productivity of the turning process. It is a self-excited vibration that is mainly caused by the interaction between the machine-tool/workpiece structure and the cutting process dynamics. This work introduces a general method which avoids lengthy algebraic (symbolic) manipulations in deriving, a characteristic equation. The solution scheme is simple and robust since the characteristic equation is numerically formulated as a single variable equation whose variable is well bounded rather than two nonlinear algebraic equations with unbounded variables. An asymptotic stability index is also introduced for a relative stability analysis. The method can be applied to other machining processes, as long as the system equations can be expressed as a set of linear time invariant difference-differential equations.
机译:机床颤振是限制车削过程生产率的主要限制之一。这是一种自激振动,主要是由机床/工件结构与切削过程动力学之间的相互作用引起的。这项工作介绍了一种通用的方法,该方法避免了冗长的代数(符号)运算,从而推导了特征方程。该解决方案简单而稳健,因为特征方程在数值上被公式化为一个单变量方程,其变量有界,而不是两个具有无界变量的非线性代数方程。还引入了渐近稳定性指数以进行相对稳定性分析。该方法可以应用于其他加工过程,只要系统方程可以表示为一组线性时不变差分-微分方程即可。

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