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Experimental analysis and modelling of the dynamic performance of machine tool spindle-bearing systems

机译:机床轴承系统动态性能的实验分析与建模

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摘要

In this paper, an analysis of the dynamic characteristics of machine tool spindle-bearing Systems is presented. The research utilized the force impact-response testing method. The results are applied to the analysis and modelling of the dynamic performance of machine tool spindle-bearing systems. As an indicator of dynamic performance, the impulse response matrices are experimentally obtained. Two types of impulse response matrices are considered: (i) with respect to (wrt) acceleration; which describes the space-coupled relationship between the vectors of the force (impact) and measured acceleration (response) and (ii) wrt displacement; which describes the space-coupled relationship between vectors of the force and simulated displacement. The results indicate an interrelation between different directions of displacements, and lay a foundation for the dynamic modelling of spindle-bearing systems in view of the transfer matrix with nonzero non-diagonal elements. From an engineering point of view, the transfer function matrix can be considered a “dynamic imprint”, or “signature” of system performance. As a practical example, the dynamic properties (the impulse and frequency response matrices) of the spindle-bearing system of a Barer-Proteo D/94 high precision machining center are obtained, identified and investigated. The developed approach for modelling and parameter identification appears promising for a wide range of industrial applications, including rotary systems.
机译:本文介绍了机床轴承系统动态特性的分析。该研究利用了力冲击响应试验方法。结果应用于机床轴承系统动态性能的分析和建模。作为动态性能的指标,实验获得脉冲响应矩阵。考虑了两种类型的脉冲响应矩阵:(i)相对于(WRT)加速度;这描述了力(冲击)的矢量与测量的加速度(响应)和(ii)WRT位移之间的空间耦合关系;这描述了力和模拟位移的载体之间的空间耦合关系。结果表明在具有非零非对角线元件的传输矩阵的视图中,对不同方向的不同方向之间的相互关系,并为主轴系统的动态建模奠定了基础。从工程角度来看,传递函数矩阵可以被认为是系统性能的“动态印记”或“签名”。作为一个实例,获得了晶片 - PROTEO D / 94高精度加工中心的主轴系统的动态特性(脉冲和频率响应矩阵),鉴定并研究。用于建模和参数识别的开发方法对于各种工业应用,包括旋转系统。

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