首页> 外文期刊>Journal of bridge engineering >Seismic Retrofitting of Rectangular Bridge Piers with Deficient Lap Splices Using Ultrahigh-Performance Fiber-Reinforced Concrete
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Seismic Retrofitting of Rectangular Bridge Piers with Deficient Lap Splices Using Ultrahigh-Performance Fiber-Reinforced Concrete

机译:高性能搭接混凝土对搭接不足的矩形桥墩的抗震改造

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The effectiveness of an innovative retrofitting method using ultrahigh-performance fiber- concrete (UHPFRC) was investigated experimentally on RC bridge piers with deficient lap splice details. The objective is to study the performance of the proposed retrofitting technique for eliminating the bond failure mode in lap splice regions of rectangular columns with a cross-sectional aspect ratio exceeding 2. The strengthening technique consists of substituting the normal concrete around lapped bars in the splice region by UHPFRC. The test program includes unidirectional reverse cyclic tests conducted on five rehabilitated and one control rectangular large-scale specimens. The longitudinal reinforcement ratio ranged from 1.30 to 1.67% with bar diameters (d(b)) equal to 25, 30, 35, and 45 mm. A splice length at the column base of 24d(b) and stirrup spacing of 300 mm were used for all specimens to replicate column design practice before the introduction of modern seismic design specifications. The selected self-compacting UHPFRC mix contained 234 kg/m(3) (3% by volume) of 10 x 0.20-mm straight fibers. The failure of all retrofitted specimens was progressive and ductile because they all failed due to the successive rupture of the dowel bars in the footing at a very high displacement ductility ratio. The lapped splice splitting failure mode was eliminated, whereas no longitudinal bar buckled. The UHPFRC cover integrity contributed to eliminate all failure modes associated with concrete damage (crushing, spalling). Recommendations for applying the proposed technique to deficient column rehabilitation are suggested. (c) 2017 American Society of Civil Engineers.
机译:在缺乏搭接细节的RC桥墩上,通过实验研究了使用超高性能纤维混凝土(UHPFRC)的创新改造方法的有效性。目的是研究所提出的改型技术的性能,该技术可消除横截面纵横比超过2的矩形柱搭接区域的粘结破坏模式。加固技术包括用普通混凝土代替搭接中搭接钢筋的方法。由UHPFRC划分。测试程序包括对五个修复后的矩形对照大样本和一个对照的矩形大样本进行的单向反向循环测试。纵向钢筋比率为1.30至1.67%,钢筋直径(d(b))等于25、30、35和45毫米。在引入现代抗震设计规范之前,所有标本均使用柱基底部的接头长度24d(b)和箍筋间距300 mm来复制柱设计实践。所选的自密实UHPFRC混合物包含234 kg / m(3)(按体积计3%)的10 x 0.20-mm直纤维。所有翻新标本的破坏都是渐进的和延性的,因为它们都以很高的位移延展率在基脚上连续销钉的破坏而失败。消除了搭接接头分裂失败的模式,而没有纵杆弯曲。 UHPFRC覆盖层的完整性有助于消除与混凝土损坏(压碎,剥落)相关的所有失效模式。建议将建议的技术应用于缺乏柱修复的建议。 (c)2017年美国土木工程师学会。

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