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Material parameter identification in functionally graded structures using isoparametric graded finite element model

机译:等参梯度有限元模型在功能梯度结构中的材料参数识别

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An identification algorithm based on an isoparametric graded finite element model is developed to identify the material parameters of the plane structure of functionally graded materials (FGMs). The material parameter identification problem is formulated as the problem of minimizing the objective function, which is defined as a square sum of differences between measured displacement and calculated displacement by the isoparametric graded finite element approach. The minimization problem is solved by using the Levenberg-Marquardt method, in which the sensitivity calculation is based on the differentiation of the governing equations of the isoparametric graded finite element model. The validity of this algorithm is illustrated by some numerical experiments. The numerical results reveal that the proposed algorithm not only has high accuracy and stable convergence, but is also robust to the effects of measured displacement noise.
机译:提出了一种基于等参梯度有限元模型的识别算法,用于识别功能梯度材料(FGM)平面结构的材料参数。材料参数识别问题被表述为目标函数最小化的问题,目标函数定义为通过等参渐变有限元方法测得的位移与计算出的位移之间的差的平方和。通过使用Levenberg-Marquardt方法解决了最小化问题,在该方法中,灵敏度计算基于等参渐变有限元模型的控制方程的微分。通过一些数值实验证明了该算法的有效性。数值结果表明,该算法不仅具有较高的精度和稳定的收敛性,而且对实测位移噪声的影响具有较强的鲁棒性。

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