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A novel approach for displacement and stress monitoring of sandwich structures based on the inverse Finite Element Method

机译:基于逆有限元法的夹层结构位移与应力监测新方法

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The real-time reconstruction of the displacement and stress fields from discrete-location strain measurements is a fundamental feature for monitoring systems, which is generally referred to as shape- and stress-sensing. Presented herein is a computationally efficient shape- and stress-sensing methodology that is ideally suited for applications to laminated composite and sandwich structures. The new approach employs the inverse Finite Element Method (iFEM) as a general framework and the Refined Zigzag Theory (RZT) as the underlying plate theory. Using a C-0-discretization, a three-node inverse plate finite element is formulated. The element formulation enables robust and efficient modeling of plate structures instrumented with strain sensors that have arbitrary positions. The methodology leads to a set of linear algebraic equations that are solved efficiently for the unknown nodal displacements. These displacements are then used at the finite element level to compute full-field strains and stresses that may be in turn used to assess structural integrity. Numerical results for multilayered, highly heterogeneous laminates demonstrate the unique capability of this new formulation for shape- and stress-sensing. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过离散位置应变测量来实时重建位移场和应力场是监视系统的基本特征,通常称为形状感测和应力感测。本文介绍的是一种计算效率高的形状和应力感应方法,非常适合应用于层压复合材料和夹层结构。新方法采用逆有限元法(iFEM)作为通用框架,并采用精巧之字形理论(RZT)作为底层板理论。使用C-0离散,公式化了三节点逆板有限元。元素公式可对装有任意位置应变传感器的板结构进行鲁棒而有效的建模。该方法产生了一组线性代数方程,可以有效地求解未知的节点位移。然后,这些位移将在有限元水平上用于计算全场应变和应力,进而可以用来评估结构完整性。多层,高度异质层压板的数值结果表明,这种新配方具有独特的形状和应力感应功能。 (C)2015 Elsevier Ltd.保留所有权利。

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