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Study on New Bolted T-Stub Connection with Inserted Plates under Axial and Cyclic Loads

机译:轴向和循环负荷下插入板的新螺栓T型空隙连接研究

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摘要

The bolted T-stub connection joining beam with column is being widely applied. To enhance the energy dissipation capacity of conventional T-stub connections, two rectangular plates are proposed to be inserted between the T-stub and column, so that the T-stub flange can yield both under tensile and compressive loads. This study put forward a mechanical model of a new T-stub connection with inserted plates and investigated important factors that could affect its mechanical behavior through experimental tests. Thirty specimens were designed with different configurations that differed according to the existence or absence of inserted plates, the fabrication method and the width of inserted plates. These configurations were tested under axial and cyclic loading conditions, and results showed that the proposal aiming to improve the energy dissipation capacity was feasible. The mechanical model presented coincided with the test observation and data. The advent of two inserted plates elevated the load bearing capacity, stiffness and ductility of connections under compression, whereas in tension the properties were not substantially enhanced. The welded T-stub connections outperformed those cut from standard section steel. The energy dissipated by connections with inserted plates was about 150% of that by traditional connections without inserted plates. Only within a reasonable range can the increment of plate width promote the energy dissipation capacity of T-stub connections. The optimum width of plates in terms of energy consumption accounted for around 31% of the overall width of connections.
机译:具有柱的螺栓固定T-TUB连接连接光束是广泛应用的。为了增强传统T-托空连接的能量耗散能力,提出了两个矩形板将插入T-Stub和柱之间,使得T-TUB凸缘可以在拉伸和压缩载荷下产生。本研究提出了一种与插入板的新T-Stub连接的机械模型,并通过实验测试研究了可能影响其机械行为的重要因素。三十个标本设计有不同的配置,其根据插入板的存在或不存在,制造方法和插入板的宽度不同。这些配置在轴向和循环负载条件下进行测试,结果表明,旨在提高能量耗散能力的建议是可行的。机械模型呈符合测试观察和数据。两个插入板的出现升高了压缩下的承载能力,刚度和延展性,而张紧性能没有大幅增强。焊接的T型T-TUB连接从标准段钢切割而言。通过与插入板的连接散发的能量约为150%,通过传统连接而没有插入板。仅在合理范围内只能促进T-Stub连接的能量耗散能力。在能量消耗方面,板的最佳宽度占连接总体宽度的31%。

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  • 作者

    Xiaoming Zhu; Zhaoqi Wu;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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