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On the response of a sandwich panel with a bilinear core

机译:关于双线性夹芯板的响应

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摘要

Sandwich panels can fail in a variety of ways. In the present article one type of failure is investigated and modeled that has a number of important applications, e.g., marine hulls. Here core yielding is assumed to initiate and grow in the sandwich panel while the face sheets remain bonded, unbuckled, and in the elastic range. For elastic face sheets, the core shear stresses can be determined from equilibrium of the face sheets independent of core yield. Core shear strains can then be found from the stress-strain curve and an algorithm is constructed for determining shear deflection. Bending deflection is found from the elastic solution. This approach works well except when the bilinear stress-strain behavior approaches the perfectly plastic core. With the aid of a detailed finite-element solution, it is shown that the classical sandwich theory assumptions begin to break down and that the face sheets now carry an appreciable part of the shear load. This effect is shown in detail for four-point beam bending, for which the classical sandwich solution is 20-30% below the ABAQUS results and the experimental data. For the bilinear case, not close to perfectly plastic, however, the extension of the classical theory to the core-yielding problem provides excellent results.
机译:夹心板可能会以多种方式失效。在本文中,对一种类型的故障进行了研究和建模,该故障具有许多重要的应用,例如,船体。这里假定芯屈服在夹层板中开始并增长,而面板保持粘结,不弯曲且处于弹性范围内。对于弹性面板,可以从面板的平衡中确定芯部剪切应力,而与芯部屈服无关。然后可以从应力-应变曲线中找到岩心的剪切应变,并构造了确定剪切挠度的算法。从弹性解中可以找到弯曲挠度。该方法效果很好,除非双线性应力-应变行为接近完全塑性的核心。借助于详细的有限元解决方案,可以证明经典的夹心理论假设开始崩溃,并且面板现在承担了相当一部分的剪切载荷。对于四点梁弯曲,详细显示了这种效果,对于这种情况,经典的夹心解决方案比ABAQUS结果和实验数据低20-30%。然而,对于双线性情况,不是完美的塑性,经典理论对核心屈服问题的扩展提供了出色的结果。

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