首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Effect analysis of bearing and interface dynamics on tool point FRF for chatter stability in machine tools by using a new analytical model for spindle-tool assemblies
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Effect analysis of bearing and interface dynamics on tool point FRF for chatter stability in machine tools by using a new analytical model for spindle-tool assemblies

机译:通过使用主轴工具组件的新分析模型,分析轴承和界面动力学对工具点FRF的影响,以确保机床颤振的稳定性

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Self-excited vibration of the tool, regenerative chatter, can be predicted and eliminated if the stability lobe diagram of the spindle-holder-tool assembly is known, Regardless of the approach being used, analytically or numerically, forming the stability lobe diagram of an assembly implies knowing the point frequency response function (FRF) in receptance form at the tool tip. In this paper, it is aimed to study the effects of spindle-holder and holder-tool interface dynamics, as well as the effects of individual bearings on the tool point FRF by using an analytical model recently developed by the authors for predicting the tool point FRF of spindle-holder-tool assemblies. It is observed that bearing dynamics control the rigid body modes of the assembly, whereas, spindle-holder interface dynamics mainly affects the first elastic mode, while holder-tool interface dynamics alters the second elastic mode, Individual bearing and interface translational stiffness and damping values control the natural frequency and the peak of their relevant modes, respectively, It is also observed that variations in the values of rotational contact parameters do not affect the resulting FRF considerably, from which it is concluded that rotational contact parameters of both interfaces are not as crucial as the translational ones and therefore average values can successfully be used to represent their effects. These observations are obtained for the bearing and interface parameters taken from recent literature, and will be valid for similar assemblies. Based on the effect analysis carried out, a systematic approach is suggested for identifying bearing and interface contact parameters from experimental measurements.
机译:如果已知主轴夹具工具组件的稳定性凸角图,则可以预测并消除刀具的自激振动,即再生颤振,无论使用哪种方法,无论是分析还是数字方式,都可以形成主轴的稳定性凸角图。装配意味着知道工具尖端处的接收形式的点频率响应函数(FRF)。本文旨在通过使用作者最近开发的用于预测刀具点的分析模型,研究主轴-刀座和刀柄-刀具界面动力学的影响,以及单个轴承对刀具点FRF的影响。主轴支架工具组件的FRF。可以看出,轴承动力学控制着组件的刚体模式,而主轴-夹具界面动力学主要影响第一弹性模式,而夹具-工具界面动力学则改变了第二弹性模式,单独的轴承和界面平移刚度和阻尼值分别控制它们各自相关模式的固有频率和峰值,还可以观察到,旋转接触参数值的变化不会显着影响所得的FRF,由此得出的结论是,两个界面的旋转接触参数均不相同。关键是翻译,因此平均值可以成功地用来表示其效果。这些观察结果是从最近的文献中获得的有关轴承和界面参数的信息,对于类似的组件也将有效。在进行效果分析的基础上,提出了一种从实验测量中识别轴承和界面接触参数的系统方法。

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