基于微观分析的超高性能混凝土抗拉性能理论与试验研究

Liu Xinyi, Zhang Rongling, Duan Yun
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引用次数: 0

摘要

高性能混凝土(UHPC)结构的抗裂性能和耐久性直接影响其抗拉性能。建立了一种微观分析方法来研究UHPC在出现可见裂纹之前的拉伸行为。将钢纤维与水泥基体的协同特性作为微观分析方法的研究重点。钢纤维的随机分布被认为是正态分布。基于微观分析方法,将UHPC的拉伸行为划分为弹性阶段和微损伤发展阶段。利用其他数据验证微观分析方法的可行性,并使用纯弯曲试件进行必要的数据测试以验证理论模型。结果表明,内部钢纤维的工作机理可以用微观分析方法来描述。UHPC在弹性和微损伤发展阶段的弯曲试验结果与理论模型吻合。UHPC的拉伸性能主要由内部钢纤维控制,水泥基体的贡献可以忽略不计。提出了一种双线性模型来描述UHPC在出现可见裂纹之前的拉伸本构,每个阶段的极限分别为8.85 MPa和12.36 MPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical and Experimental Research of Ultra-High-Performance Concrete Tensile Behaviour Based on Micro-Analysis
The cracking resistance and durability of the ultra-high-performance concrete (UHPC) structure are directly affected by its tensile behaviour. A micro-analysis method was established to study the tensile behaviour of the UHPC before the appearance of visible cracks. The cooperative characteristic of the steel fibre and the cement matrix was taken as a research focus of the micro-analysis method. The random distribution of steel fibre was considered as normal distribution. Based on the micro-analysis method, the tensile behaviour of UHPC was divided into the elastic stage and micro-damage development stage. Other data sourced elsewhere were used to verify the feasibility of the micro-analysis method and the necessary data were tested using pure bending specimens to verify the theoretical model. The results show that the working mechanism of inner steel fibre can be described by the micro-analysis method. The bending test results of the UHPC at the elastic and the micro-damage development stage match the theoretical model. The tensile behaviour of the UHPC is dominated by the inner steel fibre and the contribution of the cement matrix can be ignored. A bilinear model is proposed to describe the tensile constitutive of UHPC before the appearance of visible cracks, and the limitations of each stage are 8.85 MPa and 12.36 MPa.
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