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On crack propagation of l-ll mixed mode fracture in concrete by means of photoelastic coatings

机译:通过光弹性涂料在混凝土中L-LL混合模式断裂裂纹的裂纹繁殖

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Investigation on crack propagation is important to understand mechanical behaviors and fracture mechanism in concrete. Till now substantial work has been done on crack propagation under mode-I loading, and mixed-mode fracture mechanics problems, however, are more common for actual crack growth. This study aims to systematically investigate the crack initiation, stable propagation and unstable failure of concrete under I-II mixed mode condition by using photoelasticity technique. For this purpose, reflective photoelastic coatings were applied to the surface of the four-point shearing notched concrete specimens with the maximum size of 2500mmx600mmx200mm. The resulting interference fringe on photoelastic coatings was recorded to reflect a complete crack propagation process. Based on the colored strain sequence, the strain profile around the crack tip could be determined and thereafter the load-crack extension curve. Then finite element analysis was performed to simulate the process of crack propagation and corresponding stress intensity factors were solved for every step. Experimental results show obvious stable crack propagation in concrete before unstable failure under I-II loading condition. The conventional failure criterion with the absence of this stable propagation quantity is therefore conservative. Besides, the fracture mode is ultimately I-mode even the specimen is subjected to I-II mixed mode loading condition, that is, the crack will extend in a direction perpendicular to the peak principal stress.
机译:裂纹繁殖的调查对于了解混凝土中的机械行为和断裂机制非常重要。到目前为止,在模式-I装载下,在裂缝传播上进行了实质性的作品,然而,混合模式断裂力学问题对于实际裂缝增长更为常见。本研究旨在通过使用光弹性技术来系统地研究在I-II混合模式条件下混凝土的裂纹启动,稳定的传播和不稳定故障。为此目的,将反射光弹性涂层施加到四点剪切的切口混凝土样本的表面,最大尺寸为2500mm×600mmx200mm。记录了所得干涉涂层上的干涉条纹以反映完全的裂纹繁殖过程。基于彩色应变序列,可以确定裂纹尖端周围的应变轮廓,然后是负载裂缝延伸曲线。然后进行有限元分析以模拟裂缝传播的过程,并且每个步骤都解决了相应的应力强度因子。实验结果表明,I-II负载下不稳定故障前的混凝土明显稳定裂纹繁殖。因此,不存在这种稳定的传播量的传统故障标准是保守的。此外,裂缝模式最终是I-Mode,即使样品也经受I-II混合模式负载条件,即,裂缝将在垂直于峰值主应力的方向上延伸。

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