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Flexural and tensile properties of a glass fiber-reinforced ultra-high-strength concrete: an experimental, micromechanical and numerical study

机译:玻璃纤维增​​强超高强度混凝土的弯曲和拉伸性能:实验,微机械和数值研究

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摘要

The focus of this research effort was characterization of the flexural and tensile properties of a specific ultra-high-strength, fiber-reinforced concrete material. The material exhibited a mean unconfined compressive strength of approximately 140 MPa and was reinforced with short, randomly distributed alkali resistant glass fibers. As a part of the study, coupled experimental, analytical and numerical investigations were performed. Flexural and direct tension tests were first conducted to experimentally characterize material behavior. Following experimentation, a micromechanically-based analytical model was utilized to calculate the material's tensile failure response, which was compared to the experimental results. Lastly, to investigate the relationship between the tensile failure and flexural response, a numerical analysis of the flexural experiments was performed utilizing the experimentally developed tensile failure function. Results of the experimental, analytical and numerical investigations are presented herein.
机译:这项研究工作的重点是表征特定的超高强度纤维增强混凝土材料的弯曲和拉伸性能。该材料表现出约140 MPa的平均无侧限抗压强度,并用短而随机分布的耐碱玻璃纤维增​​强。作为研究的一部分,进行了耦合的实验,分析和数值研究。首先进行弯曲和直接拉伸试验,以实验表征材料的行为。实验之后,利用基于微机械的分析模型来计算材料的拉伸破坏响应,并将其与实验结果进行比较。最后,为研究拉伸破坏与弯曲响应之间的关系,利用实验开发的拉伸破坏函数对弯曲实验进行了数值分析。本文介绍了实验,分析和数值研究的结果。

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