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水力发电学报 ›› 2019, Vol. 38 ›› Issue (3): 195-202.doi: 10.11660/slfdxb.20190321

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静水压力作用下混凝土断裂全过程数值模拟研究

  

  • 出版日期:2019-03-25 发布日期:2019-03-25

Numerical simulations of whole fracturing process of concrete under hydrostatic pressure

  • Online:2019-03-25 Published:2019-03-25

摘要: 基于起裂韧度扩展准则和Paris位移公式,推导了静水压力作用下混凝土楔入劈拉试件外荷载和裂缝张开位移的理论表达式,采用数值迭代方法计算模拟了裂缝断裂全过程。研究了水压力对混凝土断裂全过程的影响,进一步分析了不同水压力作用下峰值荷载和临界裂缝张开位移的参数敏感性。研究结果表明:采用本文方法计算的裂缝扩展全曲线与试验结果对比较好;水压力和初始裂缝长度影响荷载-裂缝张开位移(P-CMOD)曲线,随着水压力的增加,峰值荷载和临界裂缝张开位移均减小;随着初始裂缝长度的增大,水压力对裂缝扩展全过程曲线的影响更加明显。

关键词: 混凝土, 楔入劈拉试件, 静水压力, 起裂韧度, 裂缝

Abstract: This paper derives theoretical expressions of the external loads and crack opening displacements of concrete wedge-splitting specimens under hydrostatic pressure, based on the initial fracture toughness criterion and the Paris displacement formula. And a numerical iterative method is used to simulate the specimens’ full fracturing process, focusing on analyzing the effect of water pressure, particularly the sensitivity of the peak load parameters and the opening displacement parameters of critical cracks under different water pressures. The results show that the full crack propagation curves calculated using this method agree well with the experimental measurements. Water pressure and initial crack length affect load-displacement curves. With an increasing water pressure, both peak load and critical cracks’ opening displacement are reduced; with an increasing initial crack length, more obvious is the influence of water pressure on the full process curve of crack propagation.

Key words: concrete, wedge splitting tensile specimen, hydrostatic pressure, initial toughness, crack

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