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Seismic behavior of two exterior beam-column connections made of normal-strength concrete developed for precast construction

机译:为预制建筑开发的两个由普通强度混凝土制成的外部梁柱连接的抗震性能

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The lack of in-depth understanding of the seismic behavior and ductility of precast concrete structures makes it difficult to reach to ductility demand which could be exhibited during an earthquake. The limitations are mainly related to the beam-to-column connections as the main load transfer paths. Two distinct exterior beam-column connections made of normal-strength concrete are investigated experimentally. Both dry and wet type installment techniques are used in the industrial type joints while the residential type joints are wet connections. The specimens are subjected cyclic displacement reversals in order to obtain information on strength, stiffness and ductility characteristics of the connection details. The preliminary design of the joints has been updated during the tests based on the damages observed, thus a set of improved specimens have also been built and tested, and a relatively better performance is obtained expectedly. The industrial and residential types of connections showed stable load-displacement cycles with high energy dissipation up to structural drift of 2%, though a significant level of pinching and deterioration of the critical section have occurred at around 3% drift level. The tested specimens have been numerically modeled to calibrate the analytical tools, and a satisfactory approximation has been obtained between experimental and numerical results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对预制混凝土结构的抗震性能和延性缺乏深入的了解,使得很难达到在地震中可能表现出的延性要求。这些限制主要与梁到柱的连接作为主要的荷载传递路径有关。实验研究了两种不同强度的普通强度混凝土外部梁柱连接。干式和湿式安装技术都用于工业型接头,而住宅型接头则是湿式接头。对样本进行循环位移反转,以获得有关连接细节的强度,刚度和延性特性的信息。在测试期间,已根据观察到的损坏对接头的初步设计进行了更新,因此,还构建并测试了一组改进的试样,并有望获得相对较好的性能。工业和住宅类型的连接显示出稳定的载荷-位移循环,具有高能量耗散,高达2%的结构漂移,尽管在大约3%的漂移水平上发生了严重的挤压和关键部分的劣化。已对测试样品进行了数值建模以校准分析工具,并且在实验结果和数值结果之间获得了令人满意的近似值。 (C)2015 Elsevier Ltd.保留所有权利。

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