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Clearance Identification of Beam Structure using Free Vibration Method

机译:利用自由振动法清理梁结构的识别

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The clearances, which universally exist in the joint parts of mechanical systems, are a main cause of various operation deteriorating problems, including noises generating, material wearing, even the early fatigue of members. In this paper, a new method to determine the clearance magnitude in the beam support is proposed with the description of a numerical example. The growing clearance will increase the vibration period of realistic system, and the accurateness of measurement is relevant to the frequency resolution of the instrument. Through the time series of the midpoint response of a simply supported beam, the period of the first modal free vibration can be obtained using the FFT Algorithm. Only two responses from different initial conditions are needed to identify the magnitude of the clearance. It is estimated the accurateness could be below 15%. The investigation also suggests this free vibration period approach may be adapted to handle the energy losses situations with the damping ratio considered in the formulas.
机译:普遍存在的机械系统中的间隙是各种操作劣化问题的主要原因,包括产生的噪声,佩戴材料,即使是成员的早期疲劳。在本文中,提出了一种确定光束支持中的间隙幅度的新方法,并通过对数值示例的描述提出。越来越多的间隙将增加现实系统的振动周期,测量的准确性与仪器的频率分辨率相关。通过仅支撑光束的中点响应的时间序列,可以使用FFT算法获得第一模态自由振动的时段。只需要两个来自不同初始条件的两个响应来识别间隙的大小。估计精度低于15%。该研究还提出了这种自由振动周期方法,可以适于处理具有在公式中考虑的阻尼比的能量损失情况。

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