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Mitigating Risk of Confined Explosion via Lightweight Sacrificial Cladding

机译:通过轻量级牺牲包层减轻狭窄爆炸的风险

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A confined explosion inside a critical facility may lead to the total paralysis of pertinent operations. Practical solutions to mitigate such risk include lightweight sacrificial cladding, which can be deployed as a physical barrier to protect high importance (i.e., critical) facilities from potential explosions. More specifically, sandwich panels have the potential for high energy dissipation at a relatively low cost, which makes them suitable for multiple cladding applications against a range of blast-threat scenarios. To investigate the effectiveness of sandwich panels against such threats, the results of an experimental study carried out by the authors are presented herein. The study includes 18 cold-formed steel sandwich panels featuring two core configurations selected on the basis of the resistance and modes of failure of nominally identical panels previously tested under quasistatic loading. The dynamic response of each panel configuration to the detonation of six different charges of composition C-4 at a constant standoff distance is analyzed in this paper. The test results are presented in terms of response histories, peak displacements, and observed modes of failure, while the damage levels exhibited by each panel are related to the response limits specified in design standards currently adopted in North America for the blast protection of buildings. Considerations of energy absorption and scalability suggest that panels with a unidirectional core configuration may be preferable for blast risk mitigation. (C) 2019 American Society of Civil Engineers.
机译:在关键设施内的一个受限爆炸可能导致相关操作的总瘫痪。减轻这种风险的实用解决方案包括轻质牺牲包层,可以部署为保护高度重视(即批判)设施免受潜在的爆炸的物理障碍。更具体地,夹层板具有以相对较低的成本高能量耗散的可能性,这使得它们适用于对一系列爆炸威胁情景的多个包层应用。为了调查夹心面板对抗这种威胁的有效性,本文提出了作者进行的实验研究的结果。该研究包括18个冷成型钢夹层板,其特征在于基于先前在Quasistatic Loading之前测试的名义上相同的面板的抗性和失效模式选择了两个芯配置。本文分析了每个面板配置对恒定支架距离处于恒定支架距离的六种不同组合物C-4不同电荷的爆炸的动态响应。测试结果是根据响应历史,峰位移和观察到的失败模式而呈现,而每个面板展示的损坏水平与北美目前采用的设计标准中规定的响应限制有关,用于建筑物的爆炸保护。能量吸收和可伸缩性的考虑表明,具有单向核心配置的面板对于爆炸风险缓解可能是优选的。 (c)2019年美国土木工程师协会。

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