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Multiple crack damage detection of structures using the two crack transfer matrix

机译:使用两个裂纹转移矩阵的结构多重裂纹损伤检测

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摘要

A damage detection scheme for multiple crack detection in beams is presented, based on a transfer matrix derived from beam element with two cracks. Based on fracture mechanics principles, a crack is modelled as a hinge, which provides an additional flexibility to the element. Each element is assumed to have two open-edge cracks and a new transfer matrix called two crack transfer matrix is developed using finite element method. Using an inverse approach, the transfer matrix is used to predict cracks in a beam. The state vector at a node includes displacements, forces and moments at that node; when it is multiplied with the transfer matrix, the state vector at the adjacent node can be obtained. The state vector formed at the starting node, known as initial state vector, needs to be estimated, from which state vectors at adjacent nodes are predicted using the transfer matrix. Displacement responses are measured at a few adjacent nodes in the structure. The mean square error between measured and predicted responses is minimized using a heuristic optimization algorithm, with crack depth and location in each element as the optimization variables. Two numerical examples, a cantilever and a sub-structure of a frame with nine members, are solved with two cracks in each element. The damage detection method is also validated experimentally by local identification of sub-structure of a fixed beam where the initial state vector is measured using strain gauges and accelerometers. Using this method, two cracks per single element were successfully identified. The two crack transfer matrix method is suitable for local damage identification in large structures.
机译:基于从具有两个裂纹的梁单元导出的传递矩阵,提出了一种用于梁中多个裂纹检测的损伤检测方案。根据断裂力学原理,将裂纹建模为铰链,从而为元素提供了额外的灵活性。假定每个元素都有两个开边裂纹,并使用有限元方法开发了一个称为两个裂纹传递矩阵的新传递矩阵。使用逆方法,传递矩阵可用于预测梁中的裂缝。节点处的状态向量包括该节点处的位移,力和力矩;当它与传输矩阵相乘时,可以得到相邻节点的状态向量。需要估计在起始节点上形成的状态向量(称为初始状态向量),然后使用传输矩阵从中预测相邻节点的状态向量。在结构中的几个相邻节点处测量位移响应。使用启发式优化算法将测量响应和预测响应之间的均方误差最小化,并将裂纹深度和每个元素中的位置作为优化变量。解决了两个数值示例,分别是悬臂和具有9个构件的框架的子结构,每个元素中都有两个裂缝。损伤检测方法还可以通过局部识别固定梁的子结构进行实验验证,其中使用应变仪和加速度计测量初始状态向量。使用此方法,成功地确定了每个单个元素两个裂缝。两种裂纹转移矩阵方法适用于大型结构的局部损伤识别。

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