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A FORCED VIBRATION RESPONSE-BASED DAMAGE IDENTIFICATION METHOD FOR CYLINDRICAL SHELLS

机译:基于强迫振动响应的圆柱壳损伤识别方法

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摘要

This paper presents a feasibility study on a structural damage identification method (SDIM) developed herein for cylindrical shells. The SDIM is derived directly from the governing differential equations of motion of damaged cylindrical shells. A damage distribution function is used to represent the distribution and magnitudes of local damages within a cylindrical shell. In contrast with most of existing modal parameters-based SDIMs, which requires only modal parameters measured in both intact and damaged states, the present SDIM utilizes the FRF-data in the damaged state instead of the modal parameters in the damaged state. By virtue of utilizing FRF-data, a sufficient number of equations can be derived by choosing as many sets of excitation frequency and FRF measurement point as needed. The feasibility of the present SDIM is numerically tested through some illustrative examples, taking into account the random noises in FRF-data.
机译:本文提出了本文开发的用于圆柱壳的结构损伤识别方法(SDIM)的可行性研究。 SDIM直接从损坏的圆柱壳的运动支配微分方程得出。损伤分布函数用于表示圆柱壳内局部损伤的分布和大小。与大多数现有的基于模态参数的SDIMs仅需要在完整状态和损坏状态下测量的模态参数相比,本SDIM利用处于损坏状态的FRF数据而不是处于损坏状态的模态参数。通过利用FRF数据,可以根据需要选择足够多的激发频率和FRF测量点集来导出足够多的方程。考虑到FRF数据中的随机噪声,通过一些示例性实例对本SDIM的可行性进行了数值测试。

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