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Experimental dynamic modelling of peripheral milling with process damping, structural and cutting force nonlinearities

机译:具有过程阻尼,结构和切削力非线性的外围铣削实验动力学建模

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摘要

In this paper, an extended dynamic model of peripheral milling process including process damping, structural and cutting force nonlinearities is presented. Cutting forces are described through a third-order polynomial function of chip thickness while a cubic nonlinear function is considered for the structural stiffness. Under stable and regenerative chatter conditions and using Fourier series components, closed form expressions for the nonlinear cutting forces are derived. Parameters of the proposed model are identified through a set of experiments. For this purpose, modal experiments and measurement of cutting forces (at various feed rates) are performed to determine the modal parameters and the coefficients of nonlinear cutting force model. In addition, coefficients of the structural stiffness and process damping are identified through the analysis of experimental and simulated stability lobes diagrams. Simulated stability lobes diagram is constructed based on two approaches: a trial and error (TE) based algorithm and semi-discretization method (SDM). The presented experimental method for model identification can be implemented on any industrial milling process.
机译:本文提出了一种扩展的外围铣削动力学模型,包括过程阻尼,结构和切削力非线性。切削力是通过切屑厚度的三阶多项式函数描述的,而立方非线性函数被认为是结构刚度。在稳定和再生颤振条件下,并使用傅立叶级数分量,得出了非线性切削力的闭合形式表达式。通过一组实验确定了所提出模型的参数。为此,进行模态实验和切削力的测量(在各种进给速率下)以确定模态参数和非线性切削力模型的系数。另外,通过分析实验和模拟的稳定性凸耳图,可以确定结构刚度和过程阻尼的系数。基于两种方法构造了稳定的稳定性瓣图:基于试错法(TE)的算法和半离散化方法(SDM)。提出的用于模型识别的实验方法可以在任何工业铣削过程中实施。

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