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Fiber-Reinforced Concrete in Closure Pours over Piers

机译:封闭中的纤维增强混凝土浇筑在码头上

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摘要

Cracks in concrete, high permeability, or leaking bridge joints facilitate the penetration of chloride solutions, resulting in extensive corrosion damage. Joints can be eliminated by constructing continuous decks or closure pours, and infiltration through concrete can be minimized by using low-permeability concrete and fiber-reinforced concrete (FRC) that controls cracks. This study investigated low-permeability FRCs with polyvinyl alcohol (PVA), polypropylene (PP), or steel (S) fibers to control cracking in closure pours. Large volumes of suitable fibers used in FRC enable high residual strengths and deflection hardening behavior. Generally, in these concretes, multiple tight cracks (less than 0.004 in. [0.1 mm] wide) occur, which resist the ingress of harmful solutions. In two bridges on 1-64 near Covington, VA, closure pours with FRCs were placed. The initial results indicate, in general, no or tight cracking in FRCs with PVA, PP, or S fibers. Deflection hardening did not occur in all mixtures; however, the tight cracks observed were attributed to the addition of fibers and the presence of primary reinforcement.%closure pour; crack width; fiber-reinforced concrete; polypro- pylene fibers; polyvinyl alcohol fibers; steel fibers
机译:混凝土中的裂缝,高渗透性或桥梁接头泄漏会促进氯化物溶液的渗透,从而导致广泛的腐蚀破坏。可以通过构造连续的甲板或封闭式浇筑来消除接缝,并且可以使用控制裂缝的低渗透性混凝土和纤维增强混凝土(FRC)来最大程度地减少混凝土的渗透。这项研究调查了低渗透率FRC与聚乙烯醇(PVA),聚丙烯(PP)或钢(S)纤维,以控制封闭浇注时的开裂。 FRC中使用的大量合适纤维可实现高残留强度和挠曲硬化性能。通常,在这些混凝土中,会出现多个紧密的裂缝(宽度小于0.004英寸(0.1毫米)),可以抵抗有害溶液的进入。在弗吉尼亚州卡温顿附近1-64处的两座桥梁中,放置了带有FRC的封闭浇筑物。初步结果通常表明,使用PVA,PP或S纤维的FRC不会开裂或出现紧密开裂。并非所有混合物都发生挠曲硬化;然而,观察到的致密裂纹归因于纤维的添加和主要增强的存在。裂纹宽度纤维增强混凝土;聚丙烯纤维;聚乙烯醇纤维;钢纤维

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