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A unified thermal-hardening and thermal-softening constitutive model of soils

机译:土的统一热硬化和热软化本构模型

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Based on the modified Cam-clay model and the concept of subloading yield surface, a thermo-elastoplastic model of normally consolidated and overconsolidated soils is presented in detail. The model is able to describe the thermal-hardening and thermal-softening mechanical behavior of soils with a unified set of parameters. A thermo-induced equivalent stress is proposed to consider the effect of temperature on yield surface and evolution of overconsolidation during shearing process. At the same time, the effect of temperature on the shear stress ratio at the critical state is also implemented in the model. Through comparing the simulated results with test results under different loading and temperature conditions, the availability and the accuracy of the proposed model are carefully verified. Finally, the generating mechanism of the thermal-hardening and thermal-softening mechanical behavior of soil under non-isothermal condition is discussed based on the proposed model. (C) 2019 Elsevier Inc. All rights reserved.
机译:基于改进的Cam-clay模型和超载屈服面的概念,详细介绍了正常固结和超固结土的热弹塑性模型。该模型能够用统一的参数集描述土壤的热硬化和热软化力学行为。考虑到温度对屈服面的影响以及剪切过程中超固结的演变,提出了热致等效应力。同时,在模型中还实现了温度对临界状态下的剪应力比的影响。通过将模拟结果与不同负载和温度条件下的测试结果进行比较,仔细验证了所提模型的可用性和准确性。最后,基于所提出的模型,探讨了非等温条件下土壤热硬化和热软化力学行为的产生机理。 (C)2019 Elsevier Inc.保留所有权利。

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