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Investigation of shear performance of UHPC by direct shear tests

机译:直接剪切试验调查UHPC的剪切性能

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Ultra-high performance concrete (UHPC) has been applied widely in modern structure construction. The outstanding mechanical properties of UHPC not only enable strong yet slim structural designs but also highlight its potential in protective structural constructions against extreme loads. In this study, the shear transfer behaviors of UHPC are investigated by push-off tests on Z-shaped specimens, investigating the influences of the microsteel fiber volume ratio and stirrup reinforcement ratio on the shear strength, shear slip, and shear crack width of UHPC. The test results indicate that using a microsteel fiber can enhance the shear strength of UHPC specimens. Within a reasonable range of the steel fiber volume ratio (optimum volume ratio ranges from 0% to 2.5% for microsteel fiber), the shear strength and shear slip of UHPC increase significantly, and the shear crack width reduces with an increasing steel fiber volume ratio. Additionally, the ductility, shear strength, and shear slip of UHPC increase significantly, and the shear crack width reduces with increasing stirrup ratio. Finally, the simplified empirical equations for the ultimate shear strengths of UHPC specimens are deduced, and indicate good agreement with the experimental results.
机译:超高性能混凝土(UHPC)已广泛应用于现代结构建设。 UHPC的出色机械性能不仅能够实现强大而纤细的结构设计,而且还突出了抵抗极端负荷的保护性结构结构的潜力。在这项研究中,通过在Z形样本上的推迟试验来研究UHPC的剪切转移行为,研究了微箱纤维体积比和抗剪切强度,剪切滑动和UHPC剪切裂缝宽度的影响。测试结果表明,使用微毛线纤维可以增强UHPC样品的剪切强度。在合理范围内的钢纤维体积比(最佳体积比范围内,微轴纤维的0%至2.5%),UHPC的剪切强度和剪切滑动显着增加,并且钢纤维体积比增加降低了剪切裂纹宽度。另外,UHPC的延展性,剪切强度和剪切滑动显着增加,并且剪切裂缝宽度随着搅拌比而减小。最后,推导出UHPC标本的最终剪切强度的简化经验方程,并表明了与实验结果良好的一致性。

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