通过分析单组裂隙细观特征对应力波传播特性的影响机理,提出了表达裂隙细观特征对波速影响的半连续介质动力损伤模型及表述其对波幅影响的细观损伤阻尼模型;并应用室内模型试验进行了对比验证,对比结果说明所提出的细观损伤模型较当前S....通过分析单组裂隙细观特征对应力波传播特性的影响机理,提出了表达裂隙细观特征对波速影响的半连续介质动力损伤模型及表述其对波幅影响的细观损伤阻尼模型;并应用室内模型试验进行了对比验证,对比结果说明所提出的细观损伤模型较当前S. Valliappan和E. P. Chen的最新等效连续损伤模型更接近于试验结果。展开更多
Based on the parallel bar system, combining with the synergetic method, the catastrophe theory and the acoustic emission test, a new motivated statistical damage model for quasi-brittle solid was developed. Taking con...Based on the parallel bar system, combining with the synergetic method, the catastrophe theory and the acoustic emission test, a new motivated statistical damage model for quasi-brittle solid was developed. Taking concrete for instances, the rationality and the flexibility of this model and its parameters-determining method were identified by the comparative analyses between theoretical and experimental curves. The results show that the model can simulate the whole damage and fracture process in the fracture process zone of material when the materials arc exposed to quasi-static uniaxial tensile traction. The influence of the mesoscopic damage mechanism on the macroscopic mechanical properties of quasi-brittle materials is summarized into two aspects, rupture damage and yield damage. The whole damage course is divided into the statistical even damage phase and the local breach phase, corresponding to the two stages described by the catastrophe theory. The two characteristic states, the peak nominal stress state and the critical state are distinguished, and the critical state plays a key role during the whole damage evolution course.展开更多
文摘通过分析单组裂隙细观特征对应力波传播特性的影响机理,提出了表达裂隙细观特征对波速影响的半连续介质动力损伤模型及表述其对波幅影响的细观损伤阻尼模型;并应用室内模型试验进行了对比验证,对比结果说明所提出的细观损伤模型较当前S. Valliappan和E. P. Chen的最新等效连续损伤模型更接近于试验结果。
基金Projects(90510018, 50679006) supported by the National Natural Science Foundation of ChinaProject(NCET-05-0413) support by the Program for New Century Excellent Talents in University
文摘Based on the parallel bar system, combining with the synergetic method, the catastrophe theory and the acoustic emission test, a new motivated statistical damage model for quasi-brittle solid was developed. Taking concrete for instances, the rationality and the flexibility of this model and its parameters-determining method were identified by the comparative analyses between theoretical and experimental curves. The results show that the model can simulate the whole damage and fracture process in the fracture process zone of material when the materials arc exposed to quasi-static uniaxial tensile traction. The influence of the mesoscopic damage mechanism on the macroscopic mechanical properties of quasi-brittle materials is summarized into two aspects, rupture damage and yield damage. The whole damage course is divided into the statistical even damage phase and the local breach phase, corresponding to the two stages described by the catastrophe theory. The two characteristic states, the peak nominal stress state and the critical state are distinguished, and the critical state plays a key role during the whole damage evolution course.