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首页> 外文期刊>Journal of Performance of Constructed Facilities >Quantitative Resistance Assessment of SFRP-Strengthened RC Bridge Columns Subjected to Blast Loads
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Quantitative Resistance Assessment of SFRP-Strengthened RC Bridge Columns Subjected to Blast Loads

机译:SFRP加强RC桥柱的定量抗性评估进行爆破载荷

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The blast resistance of a typical reinforced concrete bridge pier column design was modeled with a nonlinear finite element approach that considers material damage, fracture, and separation. While varying concrete strength, amount of longitudinal reinforcing steel, and gravity load, the effect of applying an externally bonded steel fiber reinforced polymer (SFRP) wrapping was assessed. The presented approach uniquely quantifies column blast resistance in terms of charge weight. It was found that blast capacity was roughly linearly related to concrete strength and steel reinforcement ratio, the former of which is most influential. It was further found that a single layer of SFRP modestly increased blast resistance, while additional SFRP layers provided minimal benefit.
机译:典型的钢筋混凝土桥墩柱设计的耐磨性采用非线性有限元方法进行了模拟,该方法考虑了物质损伤,裂缝和分离。 虽然不同的混凝土强度,纵向加强钢的量和重力载荷,评估施加外部粘合钢纤维增强聚合物(SFRP)包裹的效果。 本方法在电荷重量方面唯一地量化柱爆破阻力。 发现爆炸能力与混凝土强度和钢筋钢筋率大致线性相关,前者是最具影响力的。 进一步发现,单层SFRP适度增加的耐磨性,而另外的SFRP层提供了最小的益处。

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