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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >A method to predict position-dependent structural natural frequencies of machine tool
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A method to predict position-dependent structural natural frequencies of machine tool

机译:一种预测位置相关的机床结构固有频率的方法

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Machine tool structure has a strong influence on the dynamic properties of the tool. The change of a machine tool's structure will cause variations in the dynamic parameters of the entire tool, such as its natural frequency, which will result in changes to the stability of the tool and poor machining quality. Thus, a study on the variations of machine tool dynamics is essential for high performance cutting. In this paper, using the mass change method, a basic mathematical model for predicting the natural frequency change resulting from structural change was presented followed by an experimental validation of the model. The mathematical model indicates that structural change will lead to the outward variation of the natural frequency, which is essentially related to the change of the squared mode shape values between the original position and the modified position of the moving component With this natural frequency change rate prediction model, the natural frequency in the case of structural change can be easily predicted. The predicted results indicate that the positional change of different moving components has differing influences on the natural frequency of the machine tool. (C) 2015 Elsevier Ltd. All rights reserved.
机译:机床的结构对刀具的动态性能有很大的影响。机床结构的变化将导致整个刀具动态参数的变化,例如其固有频率,这将导致刀具稳定性的变化和较差的加工质量。因此,对机床动力学变化的研究对于高性能切削至关重要。在本文中,使用质量变化方法,提出了一个基本的数学模型,用于预测结构变化导致的固有频率变化,然后对该模型进行实验验证。数学模型表明,结构变化将导致固有频率的向外变化,这本质上与运动分量的原始位置和修改位置之间的平方模形状值的变化有关。可以很容易地预测结构变化情况下的固有频率。预测结果表明,不同运动部件的位置变化对机床固有频率的影响不同。 (C)2015 Elsevier Ltd.保留所有权利。

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