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A shell element for the prediction of residual load-carrying capacities due to delamination

机译:一种壳体元件,用于预测由于分层引起的剩余负载承载能力

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摘要

This paper deals with layered plates and shells subjected to static loading. The kinematic assumptions are extended by a jump function in dependence of a damage parameter. Additionally, an intermediate layer is arranged at any position of the laminate. This allows numerical simulation of onset and growth of delaminations. The equations of the boundary value problem include besides the equilibrium in terms of stress resultants, the local equilibrium in terms of stresses, the geometric field equations, the constitutive equations, and a constraint which enforces the correct shape of a superposed displacement field through the thickness as well as boundary conditions. The weak form of the boundary value problem and the associated finite element formulation for quadrilaterals is derived. The developed shell element possesses the usual 5 or 6 degrees of freedom at the nodes. This is an essential feature since standard geometrical boundary conditions can be applied and the elements are applicable to shell intersection problems. With the developed model, residual load-carrying capacities of layered shells due to delamination failure are computed.
机译:本文涉及静载荷的层状板和壳。通过损伤参数,通过跳跃功能扩展了运动假设。另外,中间层布置在层压板的任何位置。这允许分层的起始和生长的数值模拟。边界值问题的方程包括除了应力结果方面的平衡之外,在应力,几何场方程,本构体等式方程和约束方面的局部平衡,该约束通过厚度执行叠加的位移场的正确形状以及边界条件。推导了边值问题的弱形式和四边形的相关有限元制剂。开发的壳元件在节点上具有通常的5或6度自由度。这是一个基本特征,因为可以应用标准的几何边界条件,并且该元件适用于壳体交叉点问题。利用开发的模型,计算了由于分层故障引起的分层壳的剩余负载容量。

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