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Cyclic Behavior of Replaceable Shear Fuse Connections for Steel Moment Frames

机译:钢制弯矩框架可更换剪切保险丝连接的循环特性

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摘要

Most steel moment frames rely on beam yielding to safely handle the inelastic drifts that will be imposed by severe earthquakes. More resilient steel moment frame concepts such as post-tensioned self-centering frames and friction connections have not seen widespread use, perhaps because they deviate dramatically from current practice. Experimental work was performed to investigate the performance of a new moment frame connection called the replaceable shear fuse connection. The replaceable shear fuse connection uses beam flange plates with special cutouts to prevent beam damage. Seven reduced-scale specimens were tested to investigate the effect of fuse geometry on drift capacity, connection strength, and connection stiffness. The specimens achieved maximum drifts of 0.06-0.10 rad without experiencing strength degradation prior to fuse tearing. The shear fuses experienced strain hardening of 1.39-1.75 times yield, similar to high strain hardening that has been observed in shear link testing. The connections had more-than-adequate stiffness to be classified as fully rigid. Full-scale testing should be conducted to evaluate the effects of beam depth, column depth, and fuse parameters.
机译:大多数钢制弯矩框架依靠梁的屈服来安全处理剧烈地震带来的非弹性漂移。诸如后张紧自定心框架和摩擦连接之类的更具弹性的钢制力矩框架概念尚未得到广泛使用,可能是因为它们与当前的实践大相径庭。进行了实验工作,以研究一种称为可更换剪切保险丝连接的新型力矩框架连接的性能。可更换的剪切保险丝连接使用带有特殊切口的横梁法兰板来防止横梁损坏。测试了七个缩小规模的样本,以研究保险丝几何形状对漂移容量,连接强度和连接刚度的影响。在熔断器破裂之前,样品的最大漂移为0.06-0.10 rad,而强度没有降低。剪切熔断器经历了1.39-1.75倍屈服强度的应变硬化,类似于在剪切连接测试中观察到的高应变硬化。连接的刚度足以将其分类为完全刚度。应该进行全面测试以评估光束深度,列深度和保险丝参数的影响。

著录项

  • 来源
    《Journal of structural engineering》 |2019年第12期|04019156.1-04019156.8|共8页
  • 作者单位

    DuraFuse Frames 5801 West Wells Pk Rd W Jordan UT 84081 USA;

    Kiewit Engn Grp Inc 3555 Farnam St Omaha NE 68131 USA;

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  • 正文语种 eng
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