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Modal analysis of machine tools during working process by matrix perturbation method

机译:矩阵扰动方法在工作过程中的模态分析

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All the dynamic characteristics of machine tools, especially modal behaviors, should be known during the whole working process, in order to obtain high surface quality and accuracy of machined parts. In this paper, matrix perturbation method (MPM) is adopted to perform the modal analysis on machine tools under working state. A VMC0540d high-speed milling machine tool's modal variation within its working space is calculated by MPM and dynamically mapped. A classical modal solution method, Block-Lanczos method is used as a comparison and modal measurement experiment is carried out as verification. The results show that the machine tool's natural frequencies have a significant change with the maximum variation up to 40% during machining process. Compared with Block-Lanczos method, the time for model re-construction of first-order matrix perturbation method is obviously reduced. Modal experiments show that the MPM is credible and the error is within 10%.
机译:在整个工作过程中,应当已知机床,尤其是模态行为的所有动态特性,以获得高表面质量和加工零件的精度。 本文采用矩阵扰动方法(MPM)来在工作状态下对机床进行模态分析。 通过MPM和动态映射,VMC0540D高速铣床的高速铣床的模态变化由MPM和动态映射。 使用典型的模态解决方案方法,块 - Lanczos方法用作比较,并进行模态测量实验作为验证。 结果表明,在加工过程中,机床的自然频率具有显着变化,最大变化高达40%。 与Block-Lanczos方法相比,模型重新构建一阶矩阵扰动方法的时间明显减少。 模态实验表明,MPM是可信的,误差在10%以内。

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