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MODELING OF METALLIC SANDWICH STRUCTURES

机译:金属夹心结构的建模

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摘要

All-metal sandwich construction holds promise for significant improvements in stiffness, strength and blast resistance for built-up plate structures. Analysis of the performance of sandwich plates under various loads, static and dynamic, requires modeling of face sheets and core with some fidelity. While it is possible to model full geometric details of the core for a few selected problems, this is unrealistic for larger complex structures under general loadings. A constitutive model can be proposed as an alternative means of modeling the sandwich core. The constitutive model falls within the framework of a compressible rate-independent, anisotropic elastic-plastic solid. In this paper, the model will be presented in details, along with numerical implementation in a finite element code, and benchmarks its performance against existing constitutive models.
机译:全金属夹心结构有望大大提高积层板结构的刚度,强度和抗爆炸性。要分析夹心板在各种静态和动态载荷下的性能,需要对面板和型芯进行一定程度的逼真建模。虽然可以为一些选定的问题建模岩心的完整几何细节,但对于一般载荷下的大型复杂结构而言,这是不现实的。可以提出本构模型作为对夹心模型进行建模的替代方法。本构模型属于可压缩速率无关的各向异性弹塑性固体的框架。在本文中,将详细介绍该模型以及有限元代码中的数值实现,并针对现有的本构模型对它的性能进行基准测试。

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