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A simple and accurate four-node quadrilateral element using stabilized nodal integration for laminated plates

机译:使用稳定节点积分的层压板简单而精确的四节点四边形单元

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摘要

This paper reports the development of a simple but efficient and accurate four-node quadrilateral element for models of laminated, anisotropic plate behaviour within the framework of the first-order shear deformation theory. The approach incorporates the strain smoothing method for mesh-free conforming nodal integration into the conventional finite element techniques. The membrane-bending part of the element stiffness matrix is calculated by the line integral on the boundaries of the smoothing elements while the shear part is performed using an independent interpolation field in the natural co-ordinate system. Numerical results show that the element offered here is locking-free for extremely thin laminates, reliable and accurate, and easy to implement. Its convergence properties are insensitive to mesh distortion, thickness-span ratios, lay-up sequence and degree of anisotropy.
机译:本文报道了在一阶剪切变形理论框架内用于层状各向异性板行为模型的简单但有效且准确的四节点四边形单元的发展。该方法将用于无网格的顺应性节点积分的应变平滑方法结合到常规的有限元技术中。单元刚度矩阵的膜弯曲部分是通过平滑元素边界上的线积分计算的,而剪切部分是使用自然坐标系中的独立插值字段执行的。数值结果表明,此处提供的元件对于极薄的层压板是无锁紧的,可靠,准确且易于实施。它的收敛特性对网格变形,厚度跨度比,铺层顺序和各向异性程度不敏感。

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