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8-Node solid-shell elements selective mass scaling for explicit dynamic analysis of layered thin-walled structures

机译:用于分层薄壁结构显式动力分析的8节点固体壳单元选择性质量缩放

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摘要

To overcome the issue of spurious maximum eigenfrequencies leading to small steps in explicit time integration, a recently proposed selective mass scaling technique, specifically conceived for 8-node hexahedral solid-shell elements, is reconsidered for application to layered shells, where several solid-shell elements are used through the thickness of thin-walled structures. In this case, the resulting scaled mass matrix is not perfectly diagonal. However, the introduced coupling is shown to be limited to the nodes belonging to the same fiber through the thickness, so that the additional computational burden is almost negligible and by far compensated by the larger size of the critical time step. The proposed numerical tests show that the adopted mass scaling leads to a critical time step size which is determined by the element in-plane dimensions only, independent of the layers number, with negligible accuracy loss, both in small and large displacement problems.
机译:为了克服在最大时间上出现杂散最大本征频率导致小步长的问题,重新考虑了最近提出的选择性质量缩放技术,该技术专门针对8节点六面体实心壳单元而构思,适用于分层壳,其中几个实心壳在薄壁结构的整个厚度中都使用元素。在这种情况下,生成的缩放质量矩阵不是完全对角的。但是,引入的耦合被显示为在整个厚度上仅限于属于同一光纤的节点,因此,额外的计算负担几乎可以忽略不计,并且由临界时间步长的较大部分所补偿。拟议的数值测试表明,采用的质量缩放会导致关键的时间步长大小,该大小仅由元素的面内尺寸决定,而与层数无关,在大小位移问题中,精度损失都可以忽略不计。

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