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陈榕, 武智勇, 郝冬雪, 高宇聪. 高应力下石英砂三轴剪切颗粒破碎演化规律及影响[J]. 岩土工程学报, 2023, 45(8): 1713-1722. DOI: 10.11779/CJGE20220647
引用本文: 陈榕, 武智勇, 郝冬雪, 高宇聪. 高应力下石英砂三轴剪切颗粒破碎演化规律及影响[J]. 岩土工程学报, 2023, 45(8): 1713-1722. DOI: 10.11779/CJGE20220647
CHEN Rong, WU Zhiyong, HAO Dongxue, GAO Yucong. Evolution rules and effects of particle breakage for quartz sand in triaxial shear tests under high pressures[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(8): 1713-1722. DOI: 10.11779/CJGE20220647
Citation: CHEN Rong, WU Zhiyong, HAO Dongxue, GAO Yucong. Evolution rules and effects of particle breakage for quartz sand in triaxial shear tests under high pressures[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(8): 1713-1722. DOI: 10.11779/CJGE20220647

高应力下石英砂三轴剪切颗粒破碎演化规律及影响

Evolution rules and effects of particle breakage for quartz sand in triaxial shear tests under high pressures

  • 摘要: 高应力条件下砂土的颗粒破碎情况与一般应力条件下的明显不同,现有关于高应力条件下石英砂颗粒破碎演化模型的研究成果相对有限。通过2~8 MPa围压下固结排水(CD)和固结不排水(CU)三轴剪切试验,获取了不同应力水平下石英砂的偏应力-轴向应变-体应变或孔隙水压力关系曲线,以及砂土在剪切过程中的相对破碎率;随后分析了颗粒破碎的演化规律,并分别采用Hardin、Lade、Wang颗粒破碎模型描述石英砂破碎规律,探讨了各个模型的适用性;最后基于石英砂相对破碎率与有效破坏内摩擦角间的关系,给出了高压下影响石英砂强度的临界相对破碎率。

     

    Abstract: The particle breakage of sand under high stress is obviously different from that under the normal stress. The existing studies on the evolution rules and models of particle breakage for quartz sand under high stress are relatively limited. A series of consolidation drained (CD) and consolidation undrained (CU) triaxial shear tests are conducted under the confining pressures of 2~8 MPa to investigate the evolution rules of particle breakage for quartz sand and its effects on sand strength. The relationship curves of deviated stress-axial strain under various stress levels are obtained as well as the relative breakage during shear process. Then the evolution rules of particle breakage are analyzed, the Hardin's, Lade's and Wang's particle breakage models are adopted to describe the rules, and the applicability of each model is discussed. Finally, the critical relative breakage of quartz sand that affects sand strength under high pressures is given based on the relationship between the relative breakage and the effective failure internal friction angle.

     

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