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A displacement field approach based on FEM-ANN and experiments for identification of elastic properties of composites

机译:基于FEM-ANN的位移场方法和识别复合材料弹性特性的实验

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摘要

An inverse approach combining numerical and experimental results with full-field displacement measurements will allow the identification of all the in-plane elastic properties from experimental tests. Instead of the use of a non-destructive technique, an alternative hybrid approach is proposed to obtain the field displacement. The experimental displacement field was replaced by the nodal displacement values numerically determined using the finite element method (FEM). The use of a surrogate model based on artificial neural network (ANN) enables to establish the relationship between the elastic properties and the displacement field avoiding the exhaustive calculations based on FEM. The Uniform Design Method is used to select the input values for ANN learning procedure. The optimal estimation of the model parameters is performed by minimizing an error functional defined as the difference between the experimental measurements and the simulated output results from ANN approximation model. Two examples were chosen to validate the proposed approach. The first one uses the off-axis tensile test in order to calibrate the numerical method eight-harness satin weave glass fiber reinforced phenolic composite. The second example is a hinged cross-ply laminated plate supporting a vertical load. The numerical results show strong agreement with the experimental values.
机译:将具有全场位移测量的数值和实验结果相结合的逆方法将允许从实验测试中识别所有面内弹性性能。代替使用非破坏性技术,提出了一种替代的混合方法来获得现场位移。通过使用有限元方法(FEM)进行数值确定的节点位移值代替实验位移场。基于人工神经网络(ANN)的代理模型的用途使得能够建立弹性特性与位移场之间的关系,避免了基于FEM的详尽计算。统一的设计方法用于选择ANN学习过程的输入值。通过最小化定义为实验测量和来自ANN近似模型的模拟输出结果之间的差异的误差来执行模型参数的最佳估计。选择两个例子以验证所提出的方法。第一个使用偏离轴拉伸试验,以校准数值方法八线束缎面编织玻璃纤维增​​强酚类复合材料。第二个例子是支撑垂直载荷的铰接式交叉层叠板。数值结果表明了与实验值的强烈一致性。

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