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Experimental investigation of damage identification in beam structures based on the strain statistical moment

机译:基于应变统计矩的梁结构损伤识别试验研究

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摘要

A new two-step damage detection technique based on the fourth strain statistical moment was recently proposed by the authors, and its sensitivity to local structural damage has been numerically demonstrated for beam-type structures. In this article, the proposed method is extended to an experimental beam to assess its feasibility and practicality. A simply supported steel beam was manufactured and subjected to Gaussian white-noise excitation before and after damage. The strain responses of each measurement point were recorded based on which fourth strain statistical moments were calculated. The proposed two-step technique was implemented to locate the damaged elements of the experimental beam, for which the damage sizes were identified based on the least-square updating algorithm. The experimental results show that the proposed fourth strain statistical moment index and the two-step damage detection technique are effective and feasible for beam-type structures.
机译:作者最近提出了一种基于第四应变统计矩的新的两步损伤检测技术,并已在数值上证明了梁型结构对局部结构损伤的敏感性。在本文中,将所提出的方法扩展到实验光束以评估其可行性和实用性。制造了一个简单支撑的钢梁,并在损伤前后对其进行了高斯白噪声激发。记录每个测量点的应变响应,并根据该应变计算第四次应变统计矩。实现了提出的两步技术来定位实验光束的受损元素,并基于最小二乘更新算法确定了受损尺寸。实验结果表明,所提出的第四应变统计矩指数和两步损伤检测技术对梁型结构是有效可行的。

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