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A New Rectangular Finite Element Formulation Based on Higher Order Displacement Theory for Thick and Thin Composite and Sandwich Plates

机译:基于高阶位移理论的厚板和薄板复合夹心矩形有限元新公式

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A new displacement based higher order element has been formulated that is ideally suitable for shear deformable composite and sandwich plates. Suitable functions for displacements and rotations for each node have been selected so that the element shows rapid convergence, an excellent response against transverse shear loading and requires no shear correction factors. It is completely lock-free and behaves extremely well for thin to thick plates. To make the element rapidly convergent and to capture warping effects for composites, higher order displacement terms in the displacement kinematics have been considered for each node. The element has eleven degrees of freedom per node. Shear deformation has also been considered in the formulation by taking into account shear strains ( rxz and ryz) as nodal unknowns. The element is very simple to formulate and could be coded up in research software. A small Fortran code has been developed to implement the element and various examples of isotropic and composite plates have been analyzed to show the effectiveness of the element.
机译:已经制定了一种新的基于位移的高阶单元,非常适合剪切可变形的复合材料和夹心板。已经选择了每个节点的位移和旋转的合适功能,以使该元件显示快速收敛,对横向剪切载荷的出色响应,并且不需要剪切校正因子。它是完全无锁的,对于薄到厚的板,表现都非常好。为了使元素快速收敛并捕获复合材料的翘曲效果,已为每个节点考虑了位移运动学中的高阶位移项。该元素每个节点有11个自由度。通过考虑剪切应变(rxz和ryz)作为节点未知数,配方中还考虑了剪切变形。该元素的构成非常简单,可以在研究软件中进行编码。已经开发了一个小的Fortran代码来实现该元素,并且已经分析了各向同性和复合板的各种示例以显示该元素的有效性。

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