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首页> 外文期刊>Journal of structural engineering >Response of Reinforced Concrete Bridge Columns Subjected to Blast Loads
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Response of Reinforced Concrete Bridge Columns Subjected to Blast Loads

机译:爆炸荷载作用下钢筋混凝土桥柱的响应

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摘要

The vast majority of past research on blast-resistant structural design focuses on buildings, with limited attention directed specifically towards bridges. Although many of the same principles apply, bridges pose unique challenges that are not often encountered when designing buildings for blast resistance. Specifically, establishing standoff with bridges is difficult because they are intended to provide open access to the traveling public, and structural components are directly loaded rather than having loads transferred to them through a facade system. Thus, relative to buildings, bridge components may be exposed to large blast threats that can be in close proximity to the potential target. To address these unique challenges, experimental and computational research was carried out, through support from the National Cooperative Highway Research Program (NCHRP), to understand the behavior of blast-loaded concrete bridge members. Although spalling of concrete cover off the back of reinforced concrete walls subjected to blast loads is a well-understood phenomenon, specimens experimentally tested for the current research exhibited spalling of side-cover concrete, which previously has not been reported in the research literature. Using detailed finite-element models, this paper explains the cross-sectional response mechanisms that cause spalling of side-cover concrete in blast-loaded slender reinforced concrete members by numerically reproducing the behavior observed during the experimental testing program.
机译:过去有关防爆结构设计的绝大多数研究都集中在建筑物上,而对桥梁的关注很少。尽管应用了许多相同的原理,但桥梁带来了独特的挑战,而在设计抗爆建筑时却很少遇到。具体地说,很难通过桥梁建立对峙,因为桥梁的目的是为行进中的公众开放,结构构件是直接加载的,而不是通过立面系统将载荷传递给它们。因此,相对于建筑物,桥梁组件可能会受到巨大爆炸威胁的威胁,而爆炸威胁可能紧邻潜在目标。为了应对这些独特的挑战,在国家公路合作研究计划(NCHRP)的支持下,进行了实验和计算研究,以了解爆破混凝土桥梁构件的性能。尽管遭受爆炸载荷的钢筋混凝土墙背上的混凝土覆盖层剥落是一个很好理解的现象,但对本研究进行实验测试的标本表现出侧盖混凝土剥落的现象,以前在研究文献中尚未对此进行报道。通过使用详细的有限元模型,本文通过数值再现实验测试程序中观察到的行为,解释了导致爆破荷载的细长钢筋混凝土构件中侧盖混凝土剥落的截面响应机制。

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