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热-机械耦合过程中岩石损伤演化本构行为

Damage Evolution Constitutive Behavior of Rock in Thermo-Mechanical Coupling Processes.

作者信息

Wang Suran, Liao Haohao, Chen Youliang, Fernández-Steeger Tomás Manuel, Du Xi, Xiong Min, Liao Shaoming

机构信息

Department of Geotechnical Engineering, College of Civil Engineering, Tongji University, 1239 Siping Road, Shanghai 200092, China.

Department of Civil Engineering, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai 200093, China.

出版信息

Materials (Basel). 2021 Dec 18;14(24):7840. doi: 10.3390/ma14247840.

Abstract

For thermal and loaded rock in engineering structures for some projects, triple-shear Drucker-Prager yield criteria, compaction coefficient , damage variable correction factor , and thermal damage variable are introduced in a new thermomechanical (TM) constitutive model for the entire process. The compaction stage of rock in uniaxial compression test and the strain softening of rock caused by thermal attack are considered in this article. The damage evolution of rocks is described by a damage variable and a constitutive equation, which are in agreement with the actual thermal experimental breakage. The uniaxial compressive strength of granite subjected to a TM coupling effect can be predicted properly by this new unified constitutive model. The new TM unified constitutive model considering the compaction stage and post-failure stage is in good agreement with the test curves throughout the entire process. The coupling effect of heat and load in the total damage of rock has obvious nonlinear properties, but the coupling effect significantly weakens the specimens. By using the new TM unified constitutive model, the whole process of changes in rock damage with strain after high temperature can be calculated. Meanwhile, the model well represents the stress-strain curve at the post-failure stage. It is expected that this model can provide references for studying the mechanical response of the rock damage propagation characteristics in the future.

摘要

对于某些工程结构中的热加载岩石,在一个新的热-力(TM)本构模型中引入了三剪德鲁克-普拉格屈服准则、压实系数、损伤变量修正因子和热损伤变量,用于描述整个过程。本文考虑了岩石在单轴压缩试验中的压实阶段以及热冲击引起的岩石应变软化。岩石的损伤演化通过损伤变量和本构方程来描述,这与实际热试验破坏情况相符。该新的统一本构模型能够合理预测受TM耦合效应影响的花岗岩单轴抗压强度。考虑压实阶段和破坏后阶段的新TM统一本构模型在整个过程中与试验曲线吻合良好。热与荷载在岩石总损伤中的耦合效应具有明显的非线性特性,但耦合效应会显著削弱试件。利用新的TM统一本构模型,可以计算出高温后岩石损伤随应变变化的全过程。同时,该模型很好地反映了破坏后阶段的应力-应变曲线。期望该模型能够为今后研究岩石损伤扩展特性的力学响应提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f778/8706257/606b46f655d9/materials-14-07840-g001.jpg

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