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An improved receptance coupling substructure analysis to predict chatter free high speed cutting conditions

机译:改进的接收耦合子结构分析,以预测喋喋不休的高速切削条件

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This paper presents a new Receptance Coupling Substructure Analysis (RCSA) approach. The technique represents a valid instrument to predict Frequency Response Function, and consequently chatter free cutting conditions, of a not previously tested mill. The proposed RCSA methodology exploits experimental dynamic compliance measurements and the Finite Element (FE) model of a tool to estimate, through a new defined formulation, both the matrices of receptances of the spindle-tool holder assembly and the tool-tool holder connection stiffness. These data, together with the FE model of any new desired mill, can be used to estimate the relative tool tip dynamic compliance. The suggested formulation basically overcomes the drawbacks in the estimation of "rotation/torque" receptances that often limits the accuracy of the classical RCSA. The proposed innovative approach was experimentally tested and validated.
机译:本文介绍了一种新的接收耦合子结构分析(RCSA)方法。该技术代表了一种预测频率响应函数的有效仪器,并因此是未预先测试的研磨机的频率响应函数的抗切割条件。所提出的RCSA方法能够通过新的规定的制剂利用工具的实验性动态合规测量和工具的有限元(FE)模型来估计主轴 - 工具架组件的接收矩阵和工具工具架连接刚度。这些数据与任何新的所需轧机的FE模型一起,可用于估计相对工具尖端动态符合性。建议的制剂基本上克服了估计“旋转/扭矩”的接收中的缺点,其通常限制古典RCSA的准确性。拟议的创新方法是通过实验测试和验证的。

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