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An efficient FE model and Least Square Error method for accurate calculation of transverse shear stresses in composites and sandwich laminates

机译:一种有效的有限元模型和最小二乘误差方法,可精确计算复合材料和夹心层板中的横向剪应力

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摘要

Accurate evaluation of transverse stresses in laminated composites and sandwich plates using 2D FE models involves cumbersome post-processing techniques. In this paper a simple and efficient method has been proposed for accurate evaluation of through-the-thickness distribution of transverse stresses in composites and sandwich laminates by using a displacement based C° FE model (2D) derived from Refined Higher Order Shear Deformation Theory (RHSDT) and a Least Square Error (LSE) method. The C~0 FE model satisfies the inter-laminar shear stress continuity conditions at the layer interfaces and zero transverse shear stress conditions at the top and bottom of the plate. In this model the first derivatives of transverse displacement have been treated as independent variables to circumvent the problem of C~1 continuity associated with the above plate theory (RHSDT). The LSE method is applied to the 3D equilibrium equations of the plate problem at the post-processing stage, after in-plane stresses are calculated by using the above FE model based on RHSDT. Thus the proposed method is quite simple and elegant compared to the usual method of integrating the 3D equilibrium equations at the post-processing stage for calculation of transverse stresses in a composite laminate. In the proposed method, the first two equations of equilibrium are utilized to compute the transverse shear stress variation through the thickness of a laminated plate whereas the third equation of equilibrium gives the normal stress variation. Accuracy of the proposed method is demonstrated in the numerical examples through comparison of the present results with those obtained from different models based on higher order shear deformation theory (HSDT) and 3D elasticity solutions.
机译:使用2D FE模型准确评估层压复合材料和夹心板中的横向应力涉及繁琐的后处理技术。本文提出了一种简单有效的方法,通过使用基于精细高阶剪切变形理论的基于位移的C°FE模型(2D),可以准确评估复合材料和夹心层板中横向应力的整个厚度分布( RHSDT)和最小二乘误差(LSE)方法。 C〜0 FE模型满足层界面处的层间剪切应力连续性条件,并且满足板的顶部和底部的零横向剪切应力条件。在该模型中,将横向位移的一阶导数作为自变量来规避与上述板理论(RHSDT)相关的C〜1连续性问题。在使用上述基于RHSDT的有限元模型计算面内应力后,将LSE方法应用于后处理阶段的板材问题的3D平衡方程。因此,与在后处理阶段对3D平衡方程进行积分以计算复合材料层板中的横向应力的常规方法相比,该方法非常简单,美观。在所提出的方法中,利用前两个平衡方程来计算通过层压板厚度的横向剪切应力变化,而第三个平衡方程则给出法向应力变化。通过将本结果与基于高阶剪切变形理论(HSDT)和3D弹性解的不同模型所获得的结果进行比较,在数值示例中证明了该方法的准确性。

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