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Study on residual behaviour and flexural toughness of fibre cocktail reinforced self compacting high performance concrete after exposure to high temperature

机译:纤维鸡尾酒增强自密实高性能混凝土高温后的残余行为和抗弯韧性研究。

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摘要

This paper analyzed the effect of different fibres on the residual compressive strength, the ultimate load and flexural toughness, the failure pattern and the fracture energy of self compacting high-performance concrete (SCHPC) after exposure to various high temperature. The micro polypropylene fiber (PP fiber) could mitigate the spalling of SCHPC member significantly, but did not show clear effect on the mechanic properties of concrete. The macro steel fiber (SF) reinforced SCHPC showed higher flexural toughness and ultimate load before and after high temperatures. The mechanical properties of hybrid fibre reinforced SCHPC (HFSCHPC) after heating were better than that of mono-fibre reinforced SCHPC. The failure mode changed from pull-out of steel fibers at lower temperature to broken down of steel fibers at higher temperature. The use of hybrid fibre can be effective in providing the residual strength and failure pattern and in improving the toughness and fracture energy of SCHPC after high temperature.
机译:本文分析了不同纤维对暴露于各种高温下的自密实高性能混凝土(SCHPC)的残余抗压强度,极限载荷和挠曲韧性,破坏模式和断裂能的影响。聚丙烯微纤维(PP纤维)可以显着减轻SCHPC构件的剥落,但对混凝土的力学性能没有明显的影响。宏钢纤维(SF)增强的SCHPC在高温前后显示出较高的弯曲韧性和极限载荷。混合纤维增强SCHPC(HFSCHPC)加热后的机械性能优于单纤维增强SCHPC。失效模式从较低温度下的钢纤维拉出转变为较高温度下的钢纤维断裂。使用杂化纤维可以有效地提供残余强度和破坏模式,并且可以改善高温后SCHPC的韧性和断裂能。

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