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  • 周科平, 張亞民, 李杰林, 許玉娟. 粗、細粒徑花崗巖凍融損傷機理及其演化規律[J]. 工程科學學報, 2013, 35(10): 1249-1255. DOI: 10.13374/j.issn1001-053x.2013.10.002
    引用本文: 周科平, 張亞民, 李杰林, 許玉娟. 粗、細粒徑花崗巖凍融損傷機理及其演化規律[J]. 工程科學學報, 2013, 35(10): 1249-1255. DOI: 10.13374/j.issn1001-053x.2013.10.002
    ZHOU Ke-ping, ZHANG Ya-min, LI Jie-lin, XU Yu-juan. Degradation mechanism and evolutionary pattern of granites with coarse and fine grains in freezing-thawing condition[J]. Chinese Journal of Engineering, 2013, 35(10): 1249-1255. DOI: 10.13374/j.issn1001-053x.2013.10.002
    Citation: ZHOU Ke-ping, ZHANG Ya-min, LI Jie-lin, XU Yu-juan. Degradation mechanism and evolutionary pattern of granites with coarse and fine grains in freezing-thawing condition[J]. Chinese Journal of Engineering, 2013, 35(10): 1249-1255. DOI: 10.13374/j.issn1001-053x.2013.10.002

    粗、細粒徑花崗巖凍融損傷機理及其演化規律

    Degradation mechanism and evolutionary pattern of granites with coarse and fine grains in freezing-thawing condition

    • 摘要: 通過粗、細兩種顆粒花崗巖的凍融循環試驗和巖石力學試驗,研究了不同粒徑巖石的凍融循環作用對巖石物理力學特性的影響.利用核磁共振技術對凍融循環前后的巖樣進行檢測,得到了橫向弛豫時間譜的變化和巖樣核磁共振成像,分析了巖樣在凍融前后的孔隙度變化、空隙結構及分布的演化特性等.采用宏觀唯象損傷理論和自洽理論對不同粒徑花崗巖在凍融條件下的宏、細觀損傷演化規律進行了分析.研究發現在凍融循環作用下,巖石內部的孔隙逐漸增多,不斷造成巖石的強度損失;損傷模型的計算值與實際相符,但不同損傷理論對花崗巖損傷程度趨勢變化的反應存在差異;細顆粒花崗巖呈現出較高凍融耐久性.

       

      Abstract: The influence of freezing and thawing cycles on the physical and mechanical properties of granites with coarse and fine grains was studied by freezing and thawing cycle experiment and rock mechanic test. Rock samples were detected by nuclear magnetic resonance (NMR), their transverse relaxation time spectra and NMR images were got before and after freezing and thawing cycle experiment, and the porosity variation, pore structure and evolution laws were discussed. The macro phenomenological theory and the self-consistency theory were used to analyze the degradation principle of rock samples in macro and micro scales, respectively. It is found that the number of pores increases in the action of freezing and thawing cycles, which weakens the strength of rock samples. The theoretical values of damage models are in consistence with experimental data, but different damage theories show different results about the development of damage tendency. Granite with fine grains shows a better durability in the action of freezing and thawing cycles.

       

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