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Effects of Machine Tool Configuration on Its Dynamics Based on Orthogonal Experiment Method
Authors:GAO Xiangshenga   ZHANG Yidua   ZHANG Hongweib   WU Qionga a State
Affiliation:Key Laboratory of Virtual Reality Technology and Systems, Beihang University, Beijing 100191, China b School of Mechanical Engineering, Beijing Institute of Petrochemical Technology, Beijing 102617, China
Abstract:In order to analyze the influence of configuration parameters on dynamic characteristics of machine tools in the working space, the configuration parameters have been suggested based on the orthogonal experiment method. Dynamic analysis of a milling machine, which is newly designed for producing turbine blades, has been conducted by utilizing the modal synthesis method. The finite element model is verified and updated by experimental modal analysis (EMA) of the machine tool. The result gained by modal synthesis method is compared with whole-model finite element method (FEM) result as well. According to the orthogonal experiment method, four configuration parameters of machine tool are considered as four factors for dynamic characteristics. The influence of configuration parameters on the first three natural frequencies is obtained by range analysis. It is pointed out that configuration parameter is the most important factor affecting the fundamental frequency of machine tools, and configuration parameter has less effect on lower-order modes of the system than others. The combination of configuration parameters which makes the fundamental frequency reach the maximum value is provided. Through demonstration, the conclusion can be drawn that the influence of configuration parameters on the natural frequencies of machine tools can be analyzed explicitly by the orthogonal experiment method, which offers a new method for estimating the dynamic characteristics of machine tools.
Keywords:configuration parameter  dynamic characteristics  modal synthesis method  substructure  orthogonal experiment method
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