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Seismic behaviours of SCS sandwich shear walls using J-hook connectors

机译:使用J型钩连接器的SCS夹层剪力墙的抗震性能

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This paper firstly proposed steel-concretes-steel sandwich walls with J-hook connectors (SCSWJs) as protective structures in the Arctic offshore platforms. Followed, six large scale SCSWJs were tested under lateral cyclic loading to investigate their lateral seismic behaviours. The investigated parameters in the testing program included spacing of J-hook, concrete core strength, thickness of steel faceplate, and aspect ratio. Seismic behaviours of SCSWJs were reported in details, and the effects of these parameters on their seismic behaviours were reported and discussed. The test results showed that the SCSWJ failed in flexure mode with characteristics of tensile yielding of side plate and steel faceplate, concrete crushing at the bottom toe, and outward local buckling of steel faceplates. Pinching effect was observed in the load versus lateral drift curves after the peak load due to premature local buckling of side plates and faceplates locating between the first and second row of J-hook from the bottom. This paper developed analytical models to predict the peak lateral resistance of SCSWJ. The validations against 12 results from six cyclic tests confirmed that the developed models offered reasonable but conservative predictions on the peak lateral resistance of SCSWJ. This study promotes the applications of the SCSWJ in the earthquake-prone Arctic regions.
机译:本文首先提出了带J型钩连接器(SCSWJs)的钢-混凝土-钢夹心墙作为北极海上平台的防护结构。随后,在横向循环载荷下测试了六个大型SCSWJ,以研究其横向地震行为。测试程序中研究的参数包括J型钩的间距,混凝土芯强度,钢面板的厚度和长宽比。详细报道了SCSWJ的抗震性能,并报道和讨论了这些参数对其抗震性能的影响。测试结果表明,SCSWJ在弯曲模式下失效,具有侧板和钢面板的拉伸屈服,底部脚趾处的混凝土压碎以及钢面板向外局部屈曲的特征。在峰值载荷之后,由于侧板和面板从底部位于第一排和第二排J型钩之间的过早局部屈曲,在载荷与横向漂移曲线中观察到了收缩效应。本文开发了分析模型来预测SCSWJ的峰值侧向阻力。对六个循环试验的12个结果进行的验证证实,所开发的模型对SCSWJ的峰值侧向阻力提供了合理但保守的预测。这项研究促进了SCSWJ在地震多发的北极地区的应用。

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