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Seismic Retrofitting of Outrigger Knee Joints

机译:支腿膝关节的抗震改造

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摘要

Experimental tests were conducted on one-third-scale outrigger knee joint specimens to define the vulnerabilities of existing outrigger bents under seismic in-plane loading and to develop appropriate retrofit measures to address the identified vulnerabilities. The specimens incorporated deficiencies present in the outrigger knee joints in the WA-99 Spokane Street overcrossing in western Washington State. The as-built specimens exhibited poor behavior with failure at low ductility levels because of shear distress and reinforcement bond failures within the joint. Threshold principal tension stress values describing the expected condition of the joints were established and compared with values obtained by other researchers. Elbow-shaped circular steel jacketing around the joint and beam region was used to retrofit the as-built specimens. The retrofitted specimens formed a plastic hinge in a gap introduced at the top of the column with improved ductility and energy dissipation capacities when compared to the behavior of similar as-built specimens. Retrofitted outrigger knee joint systems can be expected to achieve ductility levels of at least 5 as well as drift capacities exceeding 6%.
机译:在三分之一比例的支腿膝关节标本上进行了实验测试,以确定在地震平面载荷下现有支腿弯头的脆弱性,并制定了适当的改造措施来解决已发现的脆弱性。标本包含了华盛顿州西部的WA-99斯波坎街立交桥的支腿膝关节中存在的缺陷。竣工后的试样表现出较差的性能,在低延性水平下会发生破坏,这是因为接头内的剪切应力和钢筋粘结失效。建立描述关节预期状况的阈值主要拉应力值,并将其与其他研究人员获得的值进行比较。接头和梁区域周围的弯头形圆形钢套用于改造标本。与类似的已建标本相比,改造后的标本在圆柱顶部引入的间隙中形成了一个塑料铰链,具有更好的延展性和能量耗散能力。改装后的支腿膝关节系统可望达到至少5的延展性,漂移能力超过6%。

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