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Static and dynamic tests on steel joints equipped with novel structural details for progressive collapse mitigation

机译:钢结构静态和动态测试,配备了逐步崩溃缓解的新型结构细节

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This paper presents static and dynamic tests on nominally-pinned steel joints equipped with novel structural details for progressive collapse mitigation. The proposed structural details utilise the exceptional ductility and strength of stainless steel pins to enhance both the tie force and the rotational capacity of a vulnerable steel joint. The stainless steel pins along with additional supporting elements are installed in the joint region without interfering with the design for gravity loads, and they can be used for both new designs and to retrofit existing steel buildings. A static test on a vulnerable industry-standard steel fin-plate connection is first presented followed by two static tests on the same connection retrofitted with the proposed structural details. The retrofitted connections were subsequently tested under dynamic conditions with increasing imposed loading using a test setup that simulates a sudden column loss scenario. The test results showed that nominally-pinned joints equipped with the proposed structural details can achieve the required tie force capacity while undergoing rotations larger than 0.2 rad. Analytical equations based on simple joint equilibrium are used to validate the results of the static tests. An analytical method based on the energy conservation principle is also proposed and comparison with the dynamic tests shows very good predictive capability when the assumed loss of energy is 22%.
机译:本文介绍了标称固定钢结构的静态和动态试验,配备了逐步崩溃缓解的新型结构细节。所提出的结构细节利用不锈钢引脚的卓越延展性和强度,以增强脆弱钢接头的拉力和旋转能力。不锈钢引脚以及附加的支撑元件安装在接合区域中,而不会干扰重力载荷的设计,并且它们可用于新设计并改造现有的钢制建筑。首先提出了对脆弱的行业标准钢翅片板连接的静态测试,然后在与所提出的结构细节的相同连接上进行两个静态测试。随后在动态条件下进行改造的连接随着使用测试设置而升高的施加,模拟突然的列丢失场景。测试结果表明,配备有所提出的结构细节的标称固定的接头可以在经历大于0.2ar的转换的同时实现所需的扎力容量。基于简单关节均衡的分析方程用于验证静态测试的结果。还提出了一种基于节能原理的分析方法,并与动态测试的比较显示,当假设的能量损失为22%时,对具有非常好的预测能力。

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