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Membrane Action of Cladding Subjected to Blast Loading and Effects on the Supporting Structure

机译:包层的膜作用对支撑结构进行喷砂加载和影响

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A recent blast design trend is to properly select cladding characteristics in order to limit blast consequences on its supporting structure. In this context, it is worth noting that cladding components may exhibit significant membrane action, and its effects may be decisive for the supporting structure. The main focus of the present study was to examine these effects through two-step dimensionless SDOF analyses, aimed at reaching conclusions that would be applicable to a large variety of cladding/supporting structure arrangements. The results of these analyses are presented by employing the dynamic load factor, representing the maximum supporting structure displacement. It was found that cladding membrane action has adverse effects over its supporting structure, as it does not allow for extensive plastic dissipation and leads to higher support reactions. On the contrary, insignificant membrane action leads to lower dynamic load factor for the supporting structure. Thus, membrane behavior should be activated only as a safety backup action in order to prevent cladding failure. A case study of a typical cladding/supporting structure is presented to demonstrate and verify the proposed two-step SDOF analyses and the obtained results.
机译:最近的爆炸设计趋势是正确选择包层特征,以限制对其支持结构的爆炸后果。在这种情况下,值得注意的是,包层组分可以表现出显着的膜作用,并且其效果可能对支撑结构具有决定性。本研究的主要重点是通过两步维度的SDOF分析来检查这些影响,旨在达到适用于各种包层/支撑结构安排的结论。通过采用动态载荷因子来提出这些分析的结果,表示最大的支撑结构位移。发现包层膜作用对其支撑结构具有不利影响,因为它不允许广泛的塑性耗散并导致较高的载体反应。相反,不显着的膜动作导致支撑结构的动态载荷因子。因此,膜行为应该仅作为安全备份动作激活,以防止包层失败。提出了一种典型的包层/支撑结构的案例研究以证明和验证所提出的两步SDOF分析和所获得的结果。

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