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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Effects of spindle speed-dependent dynamic characteristics of ball bearing and multi-modes on the stability of milling processes
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Effects of spindle speed-dependent dynamic characteristics of ball bearing and multi-modes on the stability of milling processes

机译:球轴承主轴转速相关动态特性和多模式对铣削过程稳定性的影响

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摘要

To predict the stable cutting regions of high speed milling, one needs to know the frequency response function of tool tip, which is usually obtained by the modal test or finite element from a static spindle. The dynamic characteristics of high speed spindle which is commonly supported by ball bearing, however, change dramatically during high speed rotation. In this paper, the speed dependent dynamic characteristics of ball bearings are investigated and the speed-dependent variable bearing stiffness's are determined. By considering the effects of speed-dependent dynamic characterisitics, and then the influences on the modal parameters of tool tip, a set of differential equations with variable mass, stiffness, and damping is set up to describe the dynamics of a multiple mode milling system in two orthogonal directions. Semi-discretization method is used to determine the stability boundaries related to chatter. Results indicate that the effects of variable bearing stiffness and higher order modes of spindle cannot be ignored to predict the stability of the milling processes.
机译:为了预测高速铣削的稳定切削区域,需要了解刀尖的频率响应函数,该函数通常是通过模态测试或有限元从静态主轴获得的。通常由滚珠轴承支撑的高速主轴的动态特性在高速旋转时会发生巨大变化。本文研究了球轴承的速度相关动态特性,并确定了速度相关的可变轴承刚度。通过考虑取决于速度的动态特性的影响,然后考虑对刀尖模态参数的影响,建立了一组具有可变质量,刚度和阻尼的微分方程,以描述多模式铣削系统的动力学。两个正交方向。使用半离散化方法来确定与颤动有关的稳定性边界。结果表明,可变的轴承刚度和主轴的高阶模态的影响不能用来预测铣削过程的稳定性。

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