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Design of Tension-Only Concentrically Braced Steel Frames for seismic induced impact loading

机译:抗地震冲击荷载的仅受拉同心支撑钢框架设计

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Tension-Only Concentrically Braced Frames (TOCBFs) exhibit deteriorating pinched hysteretic behaviour during strong earth- quakes. It has long been suspected that the sudden increase in ten- sile forces in the braces of TOCBFs creates detrimental impact load- ing on the connections and other structural elements. This paper addresses this issue through shake table tests of half scale, two- storey, TOCBF models. By normalizing the hysteresis loops of braces obtained from shake table tests to the yield strength of steel obtained from static tests, the increase in tensile forces in the braces was obtained. Results of dynamic tensile tests on steel cou- pons under similar strain rates as observed during the shake table tests showed that this increase in tensile forces is caused by a yield strength increase of the steel under high strain rate. A procedure is proposed to predict this increase in tensile forces in the braces at the design stage. The use of this procedure is illustrated by a design example.
机译:在强地震中,仅受拉同心支撑框架(TOCBF)表现出恶化的挤压滞后行为。长期以来人们一直怀疑,TOCBF支架中的拉力突然增加会对连接件和其他结构元件产生有害的冲击载荷。本文通过半规模,两层TOCBF模型的振动台测试解决了这个问题。通过将从振动台试验获得的支撑的磁滞回线归一化为从静态试验获得的钢的屈服强度,可以得到支撑中拉伸力的增加。与在振动台试验中观察到的相似的应变速率下,对钢票券进行动态拉伸试验的结果表明,这种拉伸力的增加是由于高应变速率下钢的屈服强度增加所引起的。提出了一种在设计阶段预测支架中拉力增加的方法。一个设计示例说明了此过程的使用。

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