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Comparison of numerical and experimental strain measurements of a composite panel using image decomposition

机译:使用图像分解的复合面板数值和实验应变测量的比较

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Image decomposition is used to address the problem of accurately and concisely describing the strain in an inhomogeneous composite panel that is bolted to a vehicle structure. Inservice, the composite panel is subject to structural loads from the vehicle which can cause unintended damage to the panel. Finite element simulations have been performed with the plan to establish their fidelity using full-field optical strain measurements obtained using digital image correlation. A methodology is presented based on using orthogonal shape descriptors to decompose the data-rich maps of strain into information-preserved data sets of reduced dimensionality that facilitate a quantitative comparison of the computational and experimental results. The decomposition is achieved employing the Fourier transform followed by fitting Tchebichef moments to the maps of the magnitude of the Fourier transform. The results show that this approach is fast and reliably describes the strain fields using less than fifty moments as compared to the thousands of data points in each strain map.
机译:图像分解用于解决精确和简明地描述螺栓固定到车辆结构的非均匀复合板中的应变的问题。 Inservice,复合面板受到车辆的结构负载,这可能会导致面板的意外损坏。已经使用使用数字图像相关获得的全场光学应变测量来执行有限元模拟来建立其忠诚。基于使用正交形状描述符来呈现方法,以将数据的丰富的应变映射分解为可促进计算和实验结果的定量比较的减少维度的信息保存的数据集。采用傅里叶变换实现分解,然后将Tchebechef矩阵拟合到傅立叶变换的大小的地图。结果表明,与每个应变映射中的数千个数据点相比,这种方法快速且可靠地描述了使用小于50次的应变场。

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