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A damage-mechanism-based creep model considering temperature effect in granite

机译:考虑温度效应的花岗岩损伤力学蠕变模型

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摘要

Based on the experimental studies of creep behavior of granite at different temperatures, a damagemechanism-based creep model is proposed. In the creep tests, the significant thermal effect on the timedependent behavior of granite is observed. The recorded acoustic emission (AE) events indicated that the overall variation of cumulative AE count during the creep test obeys an exponential function, and the induced microcracks are intensively accumulated with the appearance of the accelerated creep. Based on this understanding, by incorporating the damage evolution process, a creep model was formulated to describe the time-dependent deformation of granite at different temperatures. Finally, a preliminary validation of the proposed model is performed.
机译:基于花岗岩在不同温度下的蠕变行为的实验研究,提出了基于损伤机理的蠕变模型。在蠕变测试中,观察到了对花岗岩随时间变化行为的显着热效应。记录的声发射(AE)事件表明,蠕变测试期间累积AE计数的总体变化服从指数函数,并且随着加速蠕变的出现,诱发的微裂纹被密集地累积。基于这种理解,通过结合损伤演化过程,建立了蠕变模型来描述在不同温度下花岗岩随时间的变形。最后,对提出的模型进行了初步验证。

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