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首页> 外文期刊>MATEC Web of Conferences >Investigating the Mechanism of Shear Fatigue in Reinforced Concrete Beams subjected to Pulsating and Moving Loads using Digital Image Correlation
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Investigating the Mechanism of Shear Fatigue in Reinforced Concrete Beams subjected to Pulsating and Moving Loads using Digital Image Correlation

机译:利用数字图像关联研究脉动荷载下钢筋混凝土梁的剪切疲劳机理

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An experimental investigation on three shear-critical reinforced concrete beams was performed to investigate the mechanism of shear fatigue. The first beam was simply tested to failure under monotonic loading to determine the static capacity, whereas the other two were subjected to repetitive loading below its static capacity to failure. Of these two beams, one was subjected to a stationary pulsating load at midspan while the other was subjected to a step-wise moving load along the span. During each experiment, the crack pattern was monitored throughout using an automated crack mapping employing the digital image correlation technique. The results show that each beam exhibited a unique crack pattern which could be characterised as shear-flexure in nature. It is shown the nature of crack propagation under monotonic loading is dissimilar to that under repetitive loading, especially when the load is not stationary. Moving load is also shown to cause greater damage to the beam than the stationary pulsating load and result in a reduction in fatigue life by almost two orders of magnitude.
机译:进行了三根临界剪切钢筋混凝土梁的试验研究,以研究剪切疲劳的机理。简单测试第一根梁在单调载荷下的破坏以确定静容量,而其他两根梁承受低于其静态破坏能力的重复载荷。在这两个横梁中,一个横梁在中跨处承受固定的脉动载荷,而另一根横梁则在跨距中承受逐步移动的载荷。在每个实验过程中,使用数字图像相关技术通过自动裂缝映射始终监控裂缝模式。结果表明,每根梁都表现出独特的裂纹模式,在自然界中可以表征为剪切挠曲。结果表明,单调加载下裂纹扩展的性质与重复加载下的裂纹扩展特性不同,尤其是在载荷不是固定的情况下。还显示出移动载荷比固定脉动载荷对梁造成更大的破坏,并导致疲劳寿命降低了近两个数量级。

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