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Progressive damage detection of thin plate structures using wavelet finite element model updating

机译:基于小波有限元模型更新的薄板结构渐进损伤检测

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In this paper, wavelet finite element model (WFEM) updating technique is employed to detect sub-element damage in thin plate structures progressively. The procedure of WFEM-based detection method, which can detect sub-element damage gradually, is established. This method involves the optimization of an objective function that combines frequencies and modal assurance criteria (MAC). During the damage detection process, the scales of wavelet elements in the concerned regions are adaptively enhanced or reduced to remain compatible with the gradually identified damage scenarios, while the modal properties from the tests remains the same, i.e., no measurement point replacement or addition are needed. Numerical and experimental examples were conducted to examine the effectiveness of the proposed method. A scanning Doppler laser vibrometer system was employed to measure the plate mode shapes in the experimental study. The results indicate that the proposed method can detect structural damage with satisfactory accuracy by using minimal degrees-of-freedoms (DOFs) in the model and minimal updating parameters in optimization.
机译:本文采用小波有限元模型(WFEM)更新技术逐步检测薄板结构中的子单元损伤。建立了基于WFEM的检测方法,该方法可以逐步检测出子元素的损伤。该方法涉及目标函数的优化,该目标函数结合了频率和模态保证标准(MAC)。在损伤检测过程中,相关区域中的小波元素尺度会自适应地增加或减小,以与逐渐识别的损伤场景保持兼容,而测试的模态属性保持不变,即没有测量点替换或添加需要。通过数值和实验实例验证了该方法的有效性。在实验研究中,采用扫描多普勒激光振动计系统测量平板模式形状。结果表明,该方法通过在模型中使用最小的自由度和优化中的最小更新参数,可以以令人满意的精度检测结构损伤。

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