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Fracture properties of concrete under cyclic loading

机译:循环载荷下混凝土的断裂性质

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Three-point bending tests were performed on pre-notched beams to investigate the fracture properties of concrete under cycling loading. Electronic speckle pattern Interferometry (ESPI) technique was used to measure the full-field displacement of the beams. The influence of loading history on the fracture properties of concrete were analyzed. Results measured by ESPI were compared with that measured by a clip gauge and good agreement was observed, which validates the reliability of using ESPI to measure the deformation of fracture process zone during crack extension. The experimental results indicate that load-displacement curves under monotonic loading are an envelope line for that under cyclic loading. The load-displacement curves of each loading cycle can be divided into five stages and in both loading and unloading process, elastic deformation responses earlier than inelastic deformation. The critical crack mouth opening displacement (CMODc) increases with the loading cycles and reaches about 0.090 mm while the critical crack tip opening displacement (CTODc) is almost constant about 0.034 mm which can be used as a fracture characteristic of the material. The cumulative dissipative energy tends to reach about 21 N/m as the loading cycles increase and can be used as a fracture parameter under cyclic loading. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在预缺射束上进行三点弯曲试验,以研究循环载荷下混凝土的断裂性能。电子斑点图案干涉测量(ESPI)技术用于测量光束的全场位移。分析了负荷史对混凝土断裂性能的影响。 ESPI测量的结果与夹格计测量的结果进行了比较,观察到良好的一致性,这验证了使用ESPI测量裂缝延伸期间断裂过程区域的变形的可靠性。实验结果表明单调负载下的负载 - 位移曲线是循环载荷下的包络线。每个装载循环的负载 - 位移曲线可以分为五个阶段,并且在装载和卸载过程中,比无弹性变形更早的弹性变形响应。临界裂缝口开口位移(CMODC)随装载循环增加并且达到约0.090mm,而临界裂缝尖端开口位移(CTODC)几乎恒定约0.034mm,其可以用作材料的裂缝特性。随着装载循环的增加,累积耗散能量趋于达到约21n / m,并且可以用作循环载荷下的骨折参数。 (c)2021 elestvier有限公司保留所有权利。

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