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Experimental and Numerical Evaluation of Older Chevron Concentrically Braced Frames with Hollow and Concrete-Filled Braces

机译:空心空心混凝土支架的老式人字形同心支撑框架的试验和数值评估

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Detailed seismic provisions for concentrically braced frames have evolved continuously since 1988. Thus, vintage-era braced frames, especially those designed prior to 1988, may be prone to a number of significant deficiencies. These deficiencies include interdependent failures at the braces, connections, and beams, making them difficult to predict without system-level tests. An experimental study was undertaken to evaluate current retrofit provisions' ability to predict the seismic response of pre-1988 existing braced frames. A nearly full-scale test specimenrepresentative of a 1985 chevron braced framewas subjected to cyclic lateral loading. The specimen was subsequently upgraded with concrete-filled braces and retested. Test results demonstrate that pre-1988 braced frames are highly susceptible to weak-story behavior and local failure modes. Numerical models using standard nonlinear static methods predicted some, but not all, of these failures. Accordingly, recommendations to improve the efficacy of these numerical models are presented. (C) 2018 American Society of Civil Engineers.
机译:自1988年以来,对同心支撑框架的详细地震规定一直在不断发展。因此,老式时代的支撑框架,尤其是1988年之前设计的框架,可能容易出现许多重大缺陷。这些缺陷包括支架,连接件和梁的相互依赖的故障,因此如果不进行系统级测试,则很难预测。进行了一项实验研究,以评估当前的改装规定来预测1988年之前现有支撑框架的地震响应的能力。代表1985年V形支撑框架的近乎完整的测试样本受到周期性的横向载荷。随后用混凝土支架对标本进行升级并重新测试。测试结果表明,1988年以前的支撑框架对弱故事行为和局部失效模式高度敏感。使用标准非线性静态方法的数值模型可以预测其中一些(但不是全部)故障。因此,提出了改善这些数值模型功效的建议。 (C)2018美国土木工程师学会。

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