首页> 外文期刊>International Journal of Fatigue >Computed tomography scanning of the internal microstructure, crack mechanisms, and structural behavior of fiber-reinforced concrete under static and cyclic bending tests
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Computed tomography scanning of the internal microstructure, crack mechanisms, and structural behavior of fiber-reinforced concrete under static and cyclic bending tests

机译:静态和循环弯曲试验下纤维增强混凝土内部微观结构,裂纹机理和结构行为的计算机断层扫描

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摘要

Fiber-reinforced concrete (FRC), its behavior, and the effects of cyclic loading on its internal microstructure are studied in this paper. Particular attention is given to the evolution of the residual tensile strength of the fiber-reinforced concretes and damage following cyclic flexural loading. A numerical equation is also proposed to estimate the residual tensile strength, depending on crack width, damage, fiber content, and fiber orientation. A total of 65 prismatic specimens, in two different series, were tested: one designed with 1% of fibers by volume and the other with 2% of fibers. The specimens were not notched, but had previously been subjected to pre-cracking, which has a similar effect to notching, although the specimens become more vulnerable to fatigue. Both fiber content and fiber orientation were measured using computed tomography (CT) scans. The results showed that the damage provoked a progressive reduction in the residual tensile strength. The differences in the behavior of both series were mainly related to their fiber content and, to a lesser extent, to their fiber orientation.
机译:本文研究了纤维混凝土(FRC)的性能,以及循环荷载对其内部微观结构的影响。特别要注意的是纤维增强混凝土的残余抗张强度的演变以及周期性弯曲载荷后的破坏。还提出了一个数值方程来估算残余拉伸强度,具体取决于裂缝宽度,损伤,纤维含量和纤维取向。总共对65个棱柱形试样进行了两个不同系列的测试:一个试样的纤维含量为1%(体积),另一个试样的纤维含量为2%。样品没有开槽,但先前已经进行了预开裂,与开槽具有相似的效果,尽管样品变得更容易疲劳。使用计算机断层扫描(CT)扫描测量纤维含量和纤维取向。结果表明,损伤引起残余抗张强度的逐渐降低。两个系列的行为差异主要与它们的纤维含量有关,而在较小程度上与它们的纤维取向有关。

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