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Experimental and numerical study of the flexural behavior of steel-concrete-steel sandwich beams with corrugated-strip shear connectors

机译:瓦楞条剪切连接器钢 - 混凝土钢夹层梁弯曲行为的实验与数值研究

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An important weakness of the steel-concrete-steel (SCS) sandwich structure with corrugated-strip shear connectors (CSCs) is the lack of access to make two-end welding of CSCs to the steel faceplates. In the present study, the use of plug weld was proposed to weld an inaccessible end of the CSCs. To evaluate the partial two-end welded CSCs, the SCS flexural beams including one specimen with one-end welded and four specimens with two-end welded were fabricated and tested under concentrated quasi-static loading. Then, failure modes and force-displacement diagrams were analyzed by examining parameters including the thickness of the concrete core, the number of the rows of CSCs and the type of connection of the CSCs (one-end or two-end welded). To further investigate, numerical model of the experimental specimens were created and validated. Using numerical models, the effect of parameters of steel faceplates thickness, concrete core thickness, CSCs breadth and thickness was investigated. The results showed that the use of partial two-end welded CSCs with plug welding, in addition to increasing the ultimate strength by about 30%, also provided more energy absorption than samples with oneend welded CSCs. Also, in most samples with two-end welded CSCs, the flexural failure mode was dominant over the shear failure. Finally, based on the relationships of reinforced concrete beams, a correction factor was proposed to predict the ultimate strength of the samples, which was in acceptable agreement with the experimental and numerical results.
机译:钢混凝土钢(SCS)夹层结构与波纹状剪切连接器(CSC)的重要弱点是缺乏进入,使CSC的两端焊接到钢面板上。在本研究中,提出了使用插头焊接以焊接CSC的无法访问的末端。为了评估部分两端焊接CSC,SCS弯曲梁,包括一个带一端焊接的样品和具有两端焊接的四个样品,并在浓缩的准静态载荷下进行测试。然后,通过检查包括混凝土芯的厚度的参数,CSC行的数量和CSC的连接的数量(一端或两端焊接)来分析故障模式和力 - 位移图。为了进一步研究,创建和验证了实验标本的数值模型。研究了使用数值模型,研究了钢面板厚度,混凝土芯厚度,CSC宽度和厚度的参数的影响。结果表明,使用带塞焊的部分两端焊接CSCS,除了将最终强度提高约30%之外,还提供比具有第一个焊接CSC的样品更多的能量吸收。此外,在具有两端焊接CSC的大多数样本中,弯曲故障模式在剪切失效上显着。最后,基于钢筋混凝土梁的关系,提出了一种校正因子来预测样品的最终强度,这是与实验性和数值效果的可接受的一致性。

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