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Research on Tangential Stiffnesses Solution of Horizontal Lathe Joint Surfaces and Dynamic Stiffness Optimization of the Whole Lathe Based on Modal Test

机译:基于模态试验的整个车床切向刚度溶液的切向刚度溶液及动态刚度优化

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This paper presents a method based on modal test to analyze and optimize the dynamic stiffness of horizontal lathe. Through the analysis of modal test results, it is found that the first-order and third-order modal natural modes of horizontal lathe can be expressed by the same 2-DOF model. The tangential stiffnesses of the joint surfaces connected with the lathe bases can be obtained by solving this model. The second-order mode is used to check the tangential stiffnesses, and the result shows that the 2-DOF model is accurate to some extent. By using this model, the first three natural frequencies can be easily solved, and then the sensitivity analysis of each of substructure stiffness can be carried out. The dynamic stiffness of the whole lathe can be effectively improved by optimizing substructure stiffnesses with high sensitivity. This method solves the problem that the traditional finite element method is difficult to accurately simulate the joint stiffness.
机译:本文介绍了一种基于模态试验的方法,分析和优化水平车床的动态刚度。通过对模态测试结果的分析,发现水平车床的一阶和三阶模态自然模式可以由相同的2-DOF模型表示。通过求解该模型,可以获得与车床碱连接的接合表面的切向刚度。二阶模式用于检查切向刚度,结果表明,2-DOF模型在一定程度上准确。通过使用该模型,可以容易地解决前三个自然频率,然后可以进行每个子结构刚度的灵敏度分析。通过优化具有高灵敏度的子结构刚度,可以有效地改善整个车床的动态刚度。该方法解决了传统的有限元方法难以准确地模拟关节刚度的问题。

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