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TEST PROTOCOL FOR SPRINKLER-PIPE SEISMIC SWAY-BRACES

机译:喷水管地震摇摆胶囊的试验方案

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The design codes and standards (e.g., UBC, IBC, NFPA-13) estimate the amplitude of the seismic load in sprinkler-pipe braces, but they do not specify the number of cycles for which this load must be resisted by various components of pipe braces. Because the components can fail in low-cycle fatigue, the number of load cycles must be considered in establishing the strength of the brace components. The first part of this study dealt with determining the number of cycles for which a component must resist its rated capacity. Strong-motion records from 18 severely shaken buildings were incorporated into a low-cycle fatigue model to develop a test criterion for measuring the seismic strength of brace components. In the second part, a series of tests were conducted to gain insight into the cyclic behavior of brace components. Finally, a test protocol was established to measure the seismic strength of brace components. With some modifications, the protocol can be applied to many other non-structural components.
机译:设计代码和标准(例如,UBC,IBC,NFPA-13)估计喷砂管支架中地震负荷的幅度,但它们没有指定该负载必须由管道各种部件抵抗该负载的循环次数括号。由于部件在低周期疲劳中可能失效,因此必须考虑负载循环的数量在建立支架组分的强度时。本研究的第一部分涉及确定组件必须抵抗其额定容量的循环次数。从18个严重摇晃建筑物的强运动记录被纳入低循环疲劳模型,以开发用于测量支撑组分的地震强度的测试标准。在第二部分中,进行了一系列测试,以获得对支架组分的循环行为的洞察。最后,建立了一种测试方案,以测量支撑括号组分的地震强度。通过一些修改,协议可以应用于许多其他非结构组件。

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