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首页> 外文期刊>International Journal of Damage Mechanics >A constitutive model for frozen soil based on rate-dependent damage evolution
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A constitutive model for frozen soil based on rate-dependent damage evolution

机译:基于速率依赖损伤进化的冻土构成模型

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摘要

The deformation of frozen soil under impact loading is usually accompanied by the evolution of internal defects and microdamage. By taking the strain and strain rates into account, a rate-dependent damage evolution law is proposed in this study, under the assumption of equivalent strain. Subsequently, a damage-modified rate-dependent constitutive model is proposed to describe the dynamic mechanical properties of frozen soil. A split Hopkinson pressure bar is utilized to test the dynamic mechanical response of frozen soil at different temperatures and high strain rates. The experimental results show that frozen soil produces obvious strain rate and temperature effects, and that there is a linear relationship between the peak stress and temperature. The theoretical results of the proposed constitutive model agree well with the experimental results, verifying the applicability of the model.
机译:在冲击载荷下的冷冻土壤的变形通常伴随着内部缺陷和微摩擦的演变。 通过考虑应变和应变率,在本研究中提出了一种依赖依赖性损伤演化法,该研究是在当量的等效菌株的假设中。 随后,提出了损伤改性率依赖性本构模型来描述冷冻土壤的动态力学性能。 分裂霍普金森压力棒用于测试不同温度和高应变率的冷冻土的动态机械响应。 实验结果表明,冷冻土壤产生明显的应变率和温度效应,并且峰值应力和温度之间存在线性关系。 所提出的本构模型的理论结果与实验结果相得益彰,验证模型的适用性。

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