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Crack identification based on the nonlinear response of plates with variably oriented surface crack.

机译:基于具有不同方向的表面裂纹的板的非线性响应的裂纹识别。

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摘要

In order to secure structural and operational safety of structures, it is important to implement a structural health monitoring (SHM) strategy to issue early warnings on damage or deterioration prior to costly repair or even catastrophic collapse. Developing a SHM strategy for structures enables evaluating structural integrity, durability and reliability of the monitored structure. Hence, the main objective of this work is to develop a damage detection procedure based on a plate’s dynamic response and the Hilbert transform. Rectangular plates are considered and assumed to contain a surface crack which is centrally located, with a depth of h_(0), a length of 2C and inclined with an angle β. Von Karman plate theory is adopted herein, and the crack is modeled through the line spring model given by fracture mechanics. The plate is assumed to behave nonlinearly due to large deformation. The differential quadrature method is used to investigate the linear and nonlinear dynamic behaviors of cracked plates. The influence of crack’s parameters on modal properties is discussed. The eigenfrequencies of cracked plates with respect to crack half length C and orientation β are performed. For crack characterization, Hilbert transform is applied to the obtained linear and nonlinear time responses. It is shown throughout this paper that identified backbones describe changes in crack orientation.
机译:为了确保结构的结构和操作安全,重要的是要实施结构健康监测(SHM)策略,以便在进行昂贵的维修甚至灾难性倒塌之前发出有关损坏或恶化的预警。为结构开发SHM策略可以评估受监视结构的结构完整性,耐久性和可靠性。因此,这项工作的主要目的是开发基于板的动态响应和希尔伯特变换的损伤检测程序。考虑并假定矩形板包含表面裂纹,该表面裂纹位于中心,深度为h_(0),长度为2C且倾斜角度为β。本文采用冯卡曼板理论,并通过断裂力学给出的线弹簧模型对裂纹进行建模。假定该板由于大变形而呈非线性行为。微分求积法用于研究裂纹板的线性和非线性动力学行为。讨论了裂纹参数对模态特性的影响。进行裂纹板相对于裂纹半长C和取向β的本征频率。为了表征裂纹,将希尔伯特变换应用于获得的线性和非线性时间响应。整篇论文都表明,确定的主干描述了裂纹取向的变化。

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