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Effects of fiber geometry and cryogenic condition on mechanical properties of ultra-high-performance fiber-reinforced concrete

机译:纤维几何和低温条件对超高效纤维混凝土机械性能的影响

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摘要

This study examined the effect of steel fiber geometry on the mechanical properties of ultra-high-performance fiber-reinforced concrete (UHPFRC) under cryogenic conditions (approximately - 162 degrees C). For this, compressive and tensile tests were performed using UHPFRCs containing three types of straight steel fibers and one type of twisted steel fiber. To investigate the mechanical properties of UHPFRCs under various temperatures, mechanical tests were performed in three different conditions: ambient temperature, cryogenic temperature, and recovered ambient temperature. The test results demonstrated considerable increases in both the compressive strength and tensile performance, including strength and fracture energy, for UHPFRCs with straight fibers at the cryogenic temperature, whereas that containing the twisted fibers demonstrated the poorest energy absorption capacity at the cryogenic temperature, due to the fiber fracturing. Finally UHPFRCs containing longer straight fibers most effectively achieved excellent mechanical properties at the cryogenic temperature, compared to those with short straight and twisted fibers.
机译:本研究检测了钢纤维几何形状对低温条件(约162℃)的超高效纤维钢筋混凝土(UHPFRC)的机械性能。为此,使用含有三种类型的直钢纤维和一种类型的绞钢纤维的UHPFRC进行压缩和拉伸试验。为了在各种温度下研究UHPFRC的机械性能,在三种不同的条件下进行机械测试:环境温度,低温温度和回收的环境温度。测试结果表明,抗压强度和拉伸性能的显着增加,包括强度和断裂能量,对于在低温温度下具有直纤维的UHPFRC,而含有扭曲纤维的抗纤维,由于以下原因纤维压裂。最后,含有较长的直纤维的UHPFRC最有效地实现了低温温度的优异​​的机械性能,而与具有短直和纤维的纤维。

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