首页> 外文期刊>International Journal for Numerical Methods in Engineering >Layerwise mixed element with sublaminates approximation and 3D zig-zag field, for analysis of local effects in laminated and sandwich composites
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Layerwise mixed element with sublaminates approximation and 3D zig-zag field, for analysis of local effects in laminated and sandwich composites

机译:具有次层近似和3D之字形场的分层混合元素,用于分析层状和三明治复合材料中的局部效应

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The analysis of damaged sandwich composites and thick laminates remains a still challenging task, owing to their intricate distributions of displacements and stresses across the thickness. The arduous task is capturing these distributions with an affordable computational effort. The use of sublaminate zig-zag models appears promising since they allow to group several physical layers into a sublaminate without violating the continuity of interlaminar stresses. To contribute to research in this field, a mixed, sublaminate element is developed in which displacements and stresses are approximated by two independent zig-zag models. Like for any zig-zag model, the interfacial contact conditions are fulfilled a priori suitably choosing the continuity functions and constants. In addition to the contact conditions on interlaminar shears, here those on the transverse normal stress and stress gradient are also fulfilled, as required by the elasticity theory. This uncustomary feature implies the presence of unwise terms which need C-2 continuous shape functions. To overcome this drawback, C-1 and C-2 terms are eliminated from the displacement field, as allowed by the mixed approach, then the interlaminar stresses obtained by the C-0-made displacement model are cast into a separate zig-zag representation which restores their continuity at the interfaces. As nodal d.o.f. the three displacements and the three interlaminar stresses at the upper and lower faces are assumed, in order to fulfil the contact conditions assembling the sublaminates. Standard, C-0, serendipity interpolation polynomials are used to represent both internal displacements and stress fields. As a consequence of this choice, the intra-element stress equilibria are fulfilled in an approximate integral form. This makes easier the development of the element, but does not compromise its accuracy and convergence rate, as shown by former applications. A postprocessing procedure is developed which improves the estimation of interlaminar stresses and helps to reduce the number of sublaminates. The result is that the analysis can be carried out using a single computational layer across the thickness and a reasonably fine in-plane discretization, even with distinctly different material properties of layers and in presence of damage. The overall computational time is reduced to an half of that required by a conventional sublaminate model, like present one deprived of zig-zag terms and postprocessing procedure. The numerical applications concern thermally loaded and piezoelectrically actuated thick laminates and damaged sandwich panels. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:由于位移和应力在整个厚度方向上的错综复杂的分布,因此分析受损的三明治复合材料和厚层压板仍然是一项艰巨的任务。艰巨的任务是用负担得起的计算工作来捕获这些分布。层下之字形模型的使用似乎很有希望,因为它们允许将多个物理层分组为层状,而不会破坏层间应力的连续性。为了促进该领域的研究,开发了一种混合的层状单元,其中位移和应力通过两个独立的之字形模型进行近似。像任何锯齿形模型一样,界面接触条件满足先验条件,可以适当选择连续性函数和常数。除了层间剪切的接触条件外,这里还满足了弹性理论所要求的横向法向应力和应力梯度的条件。这种非常规特征意味着需要C-2连续形状函数的不明智项的存在。为克服此缺点,在混合方法允许的情况下,从位移场中消除了C-1和C-2项,然后将由C-0制成的位移模型获得的层间应力转换为单独的之字形表示这将恢复它们在接口处的连续性。作为节点d.o.f.为了满足组装下叠层的接触条件,假定了三个位移和上下三个层间应力。标准C-0偶然性插值多项式用于表示内部位移和应力场。这种选择的结果是,单元内应力平衡以近似积分的形式实现。如先前的应用所示,这使元素的开发更加容易,但不会损害其准确性和收敛速度。开发了一种后处理程序,可以改善层间应力的估计并有助于减少子叠层的数量。结果是,即使在层的材料特性明显不同且存在损坏的情况下,也可以使用整个厚度上的单个计算层和合理精细的面内离散进行分析。总的计算时间减少到传统的分层模型所需时间的一半,例如目前的模型缺乏锯齿形项和后处理程序。数值应用涉及热加载和压电驱动的厚层压板以及损坏的夹心板。版权所有(c)2006 John Wiley&Sons,Ltd.

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