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Experimental investigation on the post-fire cyclic behavior of grouted sleeve connections

机译:灌浆套筒后火灾后循环行为的实验研究

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摘要

Grouted sleeve connections have been widely used in precast construction for joining rebar. In order to study their post-fire seismic performance, grouted sleeve connections, which are heated first to elevated temperature and then cooled down to room temperature, are tested under both monotonic and cyclic loadings. For comparisons, the same tests are also carried out on continuous rebar. The failure modes, skeleton curves and compression strength of the specimens are analyzed to study the influence of temperature on the seismic performance of the grouted sleeve connections. The results show that buckling occurs to all the grouted sleeve connections under cyclic loading. It is also found that the skeleton curves, compressive and buckling strength of both the connections and the continuous rebar decrease with the increase of temperature up to 600 degrees C. From the test results and on the basis of the GMP and GA hysteric constitutive models of steel, a modified model for cyclic constitutive law of the continuous rebar and the grouted sleeve connections is presented and validated. The results demonstrate that the modified model is capable of accurately simulating hysteretic properties of steel rebars and grouted sleeve connections. (C) 2021 Elsevier Ltd. All rights reserved.
机译:灌浆套筒连接已广泛用于加入钢筋的预制结构。为了研究其后火灾地震性能,在单调和循环载荷下测试灌浆套筒连接,然后将其先加热至高温然后冷却至室温。为了比较,还在连续钢筋上进行相同的测试。分析了试样的故障模式,骨架曲线和压缩强度,研究了温度对灌浆套筒连接的地震性能的影响。结果表明,在环状负载下的所有灌浆套筒连接中发生屈曲。还发现,连接和连续钢筋的骨架曲线,屈曲和屈曲强度随温度高达600℃的升高而降低。从测试结果和基于GMP和GA Hysteric组件模型钢材,呈钢,用于连续钢筋的循环本构规律和灌浆套筒连接的修改模型。结果表明,改性模型能够精确地模拟钢钢筋的滞后性能和灌浆套筒连接。 (c)2021 elestvier有限公司保留所有权利。

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