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Factors governing the fire response of prestressed reactive powder concrete beams

机译:针对预应力反应性粉末混凝土梁的火灾响应的因素

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This article presents the details of a fire test on eight prestressed reactive powder concrete (RPC) beams cured with 150 degrees C hot air. The test specimens varied in load ratio, cover thickness of tendons, bonded and unbonded tendons, and partial prestressing ratio. The thermal fields, deflection behavior, effective prestress, fire endurance, failure modes, and crack patterns of the beams were observed and recorded, revealing that no obvious fire-induced spalling occurred on the prestressed RPC beams. The fire test results indicate that the failure of prestressed RPC beams was driven by direct fire exposure and fracture of tendons and longitudinal rebars after generation of wide cracks in the beams. In extreme fire, prestressed RPC beams that were under-reinforced at ambient temperature may fail as low-reinforced beams. Fire resistance of the prestressed RPC beams dramatically improved with a decrease of load ratio and increase of cover thickness of tendons. Bonded prestressed RPC beams showed superior performance over equivalent unbonded prestressed RPC beams in fire. The whole-scale transferring effect of prestress loss in unbonded beams should be considered for fire resistance performance design based on structural systems.
机译:本文介绍了八个预应力反应性粉末混凝土(RPC)梁的火灾试验细节,用150摄氏度的热空气固化。试样在负荷比中变化,覆盖肌腱厚度,粘合和未粘结的肌腱,以及部分预应力比。观察和记录了热场,偏转行为,有效预应力,消防耐力,故障模式和裂缝图案,揭示预应力RPC梁上没有发生明显的火诱导剥落。火灾测试结果表明预应力RPC梁的故障通过直接火灾暴露和肌腱裂缝和纵向钢筋的裂缝驱动,在梁中产生宽裂缝。在极端火灾中,在环境温度下加强的预应力RPC梁可能失效,可能是低强度梁。预应力RPC光束的耐火性随着负荷比的降低和肌腱的覆盖厚度的增加而显着改善。粘合预应力的RPC光束在火中显示出优异的性能,在火中对等效的未粘结预应力RPC梁。基于结构系统的耐火性能设计,应考虑对未粘附梁预应力损失的全尺寸转移效果。

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