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均匀性对脆性岩石时变行为影响的数值研究

A Numerical Investigation into the Effect of Homogeneity on the Time-Dependent Behavior of Brittle Rock.

作者信息

Chen Hao-Zhe, Shao Zhu-Shan, Jin Dong-Dong, Zhang Zhe, Zhou Dong-Bo

机构信息

School of Civil Engineering, Xi'an University of Architecture & Technology, Xi'an 710055, China.

Shaanxi Key Lab of Geotechnical and Underground Space Engineering, Xi'an University of Architecture & Technology, Xi'an 710055, China.

出版信息

Materials (Basel). 2021 Nov 11;14(22):6818. doi: 10.3390/ma14226818.

Abstract

To investigate the brittle creep failure process of rock material, the time-dependent properties of brittle rocks under the impact of homogeneity are analyzed by the numerical simulation method, RFPA-Creep (2D). Deformation is more palpable for more homogeneous rock material under the uniaxial creep loading condition. At a low stress level, diffusion creep may occur and transition to dislocation creep with increasing applied stress. The law for increasing creep strain with the homogeneity index under a constant confined condition is similar to the uniaxial case, and dislocation creep tends to happen with increasing confining pressure for the same homogeneity index. The dilatancy index reaches its maximum at a high stress level when rock approaches failure, and the evolution of the dilatancy index with the homogeneity index under the same confining pressure is similar to the uniaxial case and is more marked than that under the unconfined condition. Both uniaxial and triaxial creep failure originate from the ductile damage accumulation inside rock. The dominant shear-type failure is exhibited by uniaxial creep and the conventional compression case presents the splitting-based failure mode. Under confining pressure, the creep failure pattern is prone to shear, which is more notable for the rock with higher homogeneity.

摘要

为研究岩石材料的脆性蠕变破坏过程,采用数值模拟方法RFPA-Creep(2D)分析了均匀性影响下脆性岩石的时变特性。在单轴蠕变加载条件下,岩石材料越均匀,变形越明显。在低应力水平下,可能发生扩散蠕变,并随着外加应力的增加转变为位错蠕变。在恒定围压条件下,蠕变应变随均匀性指数增加的规律与单轴情况相似,对于相同的均匀性指数,随着围压增加,位错蠕变倾向于发生。当岩石接近破坏时,剪胀指数在高应力水平达到最大值,在相同围压下,剪胀指数随均匀性指数的演化与单轴情况相似,且比无围压条件下更明显。单轴和三轴蠕变破坏均源于岩石内部的韧性损伤积累。单轴蠕变表现为主导的剪切型破坏,传统压缩情况呈现基于劈裂的破坏模式。在围压作用下,蠕变破坏模式易于发生剪切破坏,对于均匀性较高的岩石更为显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51cb/8624464/35b9f05cdc93/materials-14-06818-g001.jpg

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