基于DIC和声发射技术的峰后循环加载下大坝混凝土断裂特性试验研究

Jingwu Bu, Huiying Xu, Xinyu Wu, Xudong Chen, Bo Xu
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引用次数: 2

摘要

为研究峰后循环加载下大坝混凝土的断裂特性,对缺口立方坝混凝土试件进行了3种加载速率(0.001 mm/s、0.01 mm/s、0.1 mm/s)的楔形劈裂试验。同时,利用声发射(AE)和数字图像相关(DIC)技术对试件的裂纹扩展过程进行了记录。试验结果表明,大坝混凝土的断裂具有显著的速率效应,随着加载速率的增加,峰值荷载增大,峰后p - cmodd曲线斜率逐渐减小,大坝混凝土刚度退化更加严重。累积声发射数呈阶梯增长趋势,具有凯撒效应。随着峰后循环加载的增加,Kaiser效应减小,随着加载速率的增加,Kaiser效应增大。随着加载速率的增大,aew能量波动剧烈,b值波动频繁,表明大坝混凝土的破坏程度日益严重。随着加载过程的进行,试件的损伤逐渐累积,应变恢复速率逐渐降低。随着加载速率的增加,应变恢复速率降低,永久裂纹增大。基于虚拟裂纹模型,有效裂纹长度呈现出逐渐稳定上升的趋势。随着加载速率的增加,有效裂纹长度的增长速率变大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study on fracture properties of dam concrete under post-peak cyclic loading based on DIC and acoustic emission techniques
In order to study the fracture properties of dam concrete under post-peak cyclic loading, wedge splitting tests with three loading rates (0.001 mm/s, 0.01 mm/s, 0.1 mm/s) were performed on notched cubic dam concrete specimens. Meanwhile, the acoustic emission (AE) and digital image correlation (DIC) technologies were used to record the crack propagation process of specimens. Test results show that the fracture of dam concrete has a significant rate effect: with the loading rate increases, the peak load increases, the slope of the post-peak P-CMOD curve gradually decreases and the stiffness degradation of dam concrete becomes more serious. The cumulative AE count shows a step increasing trend and has a Kaiser effect. The Kaiser effect decreases with the post-peak cyclic loading procedure, and with the loading rate increases, the Kaiser effect increases. With the increasing of loading rate, AE energy fluctuates violently and b value fluctuates frequently, indicating the damage of dam concrete becomes more serious. As the loading procedure, the damage of the specimen accumulates gradually, and the strain recovery rate decreases gradually. With the loading rate increases, the strain recovery rate decreases and the permanent crack increases. Based on the fictitious crack model, the effective crack length shows a gradual and steady rising trend. As the loading rate increases, the growth rate of the effective crack length becomes large.
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