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混凝土断裂及亚临界扩展的细观机制

THE MESOMECHANISM OF FRACTURE PROCESS AND SUBCRITICAL CRACK GROWTH IN CONCRETE

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【作者】 鞠杨刘彩平谢和平

【Author】 JU Yang , LIU Cai-ping , XIE He-ping (Lab of Fracture & Damage Mechanics of Rocks & Concrete, School of Mechanics, Architecture & Civil Engineering, China University of Mining & Technology, Beijing, 100083, China)

【机构】 中国矿业大学(北京)力学与建筑工程学院北京市岩石混凝土破坏力学重点实验室北京市岩石混凝土破坏力学重点实验室 北京100083北京100083北京100083

【摘要】 通过模型和三点弯曲断裂SEM试验,详细研究了混凝土断裂全过程及亚临界扩展的细观机理。结果表明:混凝土断裂是一个复杂的不规则过程,存在明显的亚临界扩展现象。混凝土亚临界扩展路径是曲折的,并非经典断裂力学假定的平直路径,混凝土亚临界扩展和临界失稳扩展呈现分形特征。用起裂断裂韧性iICK和分形等效断裂韧性feICK,来描述混凝土抵抗初裂和临界失稳扩展的能力。给出了考虑亚临界扩展弯折效应的混凝土亚临界扩展长度、混凝土起裂断裂韧性iICK和分形等效断裂韧性feICK,的计算表达式。计算表明:混凝土失稳断裂时的分形等效断裂韧性feICK ,与混凝土亚临界扩展的分维数D成正比。

【Abstract】 The mechanisms of concrete fracture process and subcritical crack growth in mesoscale level have been systematically investigated through the model tests and the three-point bending fracture tests with Scanning Electron Microscope (SEM). It is shown that the fracture of concrete behaved complicatedly and irregularly, which underwent explicitly a subcritical crack growth prior to the unstable crack propagation. The subcritical crack growth appeared a kink path rather than a straight path assumed in the conventional fracture mechanics. The subcritical crack growth and the critical unstable growth behaved the fractal features. The initial fracture toughness iICK and the fractal equivalent fracture toughness feICK, were proposed to quantify the resistance capacity against the initial crack propagation and the critical unstable crack propagation in concrete. The formulas of the subcritical crack growth length, the initial fracture toughness iICK and the fractal equivalent fracture toughness feICK, were deduced in this paper. It indicates that the fractal equivalent fracture toughness feICK, at the critical unstable crack propagation is positively proportional to the fractal dimension of subcritical crack propagation.

【基金】 国家973计划项目(2002CB412705和2002CB412707);国家自然科学基金创新群体项目; 国家自然科学基金项目(19702021; 50074032; 50174055);教育部博士点科学基金项目的资助
  • 【文献出处】 工程力学 ,Engineering Mechanics , 编辑部邮箱 ,2003年05期
  • 【分类号】TU528
  • 【被引频次】42
  • 【下载频次】1064
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