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首页> 外文期刊>Mechanical systems and signal processing >Identification of the direction and value of the wave length of each mode for a rotating tire using the phase difference method
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Identification of the direction and value of the wave length of each mode for a rotating tire using the phase difference method

机译:使用相位差法识别旋转轮胎的每个模式的方向和波长值

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摘要

Natural frequencies, mode shapes and modal damping values are the most important parameters to describe the noise and vibration behavior of a mechanical system. For rotating machinery, however, the directivity of the propagation wave and the wave length of each mode should also be taken into account. Generally, the information on directivity and wave length is obtained on the basis of the mode shape result, which is estimated from several measurements measured at different locations. In this research, the accurate directivity and wave length results will be observed by calculating the phase difference at two different locations. The limitation of the proposed method, which arises from the difference between the assumed ring model and the real tire, will be explained, and a method to address the limitation is introduced. The proposed method is verified by applying it to experimental measurements, and a brief explanation of the obtained results is provided.
机译:固有频率,模态形状和模态阻尼值是描述机械系统的噪声和振动行为的最重要参数。但是,对于旋转机械,还应考虑传播波的方向性和每种模式的波长。通常,基于模式形状结果获得有关方向性和波长的信息,该模式形状结果是根据在不同位置测量的几次测量结果估算的。在这项研究中,通过计算两个不同位置的相位差,可以观察到准确的方向性和波长结果。将说明所提出的方法的局限性,该局限性是由假定的环形模型和实际轮胎之间的差异引起的,并介绍了解决该局限性的方法。通过将其应用于实验测量中,对所提出的方法进行了验证,并对获得的结果进行了简要说明。

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