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Preliminary Investigation of Local Failure Modes in Steel-Plate Composite Walls Subjected to Missile Impact

机译:导弹撞击钢板复合墙体局部故障模式的初步调查

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Steel-plate composite (SC) walls can provide excellent resilience for impactive and impulsive loading. This is due to their design, which consists of a concrete core sandwiched between two steel faceplates. The perforation resistance of SC walls for missile impact can be evaluated using a three-step method available in the literature. If perforation is prevented, other failure modes such as punching shear failure, excessive deflections, and steel plate fracture failure due to extensive yielding must be checked. Currently, there are no methods or guidance available in the research or design literature for checking these failure modes. This paper presents the results of numerical investigations which evaluate the failure modes of SC walls. A total of 80 detailed numerical models were developed and analyzed to investigate the effects of wall design parameters and boundary conditions. This paper only includes a selection of the total study and is focused only on evaluating shear failure not the other possible failure modes. The numerical results indicate that there are three failure modes other than perforation: (i) brittle shear failure, (ii) ductile flexural yielding followed by fracture of ties, and (iii) highly ductile plastic mechanism formation. The minimum shear (tie bar) reinforcement ratios required to change the failure mode from punching shear to flexural yielding to plastic mechanism formation are discussed.
机译:钢板复合材料(SC)壁可以为施工和冲动负载提供出色的弹性。这是由于它们的设计,由夹在两个钢面板之间的混凝土芯中。可以使用文献中可用的三步法评估SC壁的穿孔抗导弹撞击的抗孔抗性。如果防止穿孔,必须检查其他故障模式,如冲压剪切失效,过度偏转和由于广泛的产量而导致的钢板断裂衰竭。目前,研究或设计文献中没有可提供的方法或指导,用于检查这些故障模式。本文介绍了评价SC壁的失效模式的数值调查结果。共开发并分析了80个详细的数控模型,以研究墙壁设计参数和边界条件的影响。本文仅包括各种研究的选择,仅在评估剪切失效时聚焦,而不是其他可能的故障模式。数值结果表明,除了穿孔之外,存在三种故障模式:(i)脆性剪切失效,(ii)延性弯曲屈服,然后是关系的破裂,(iii)高度延展性塑料机理形成。讨论了将故障模式改变为冲压剪切的最小剪切(系杆)加强率,以屈服于塑料机构形成。

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