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蒋明镜, 沈珠江. 结构性粘土剪切带的微观分析(英文)[J]. 岩土工程学报, 1998, 20(2): 102-108.
引用本文: 蒋明镜, 沈珠江. 结构性粘土剪切带的微观分析(英文)[J]. 岩土工程学报, 1998, 20(2): 102-108.
Jiang Mingjing, Shen Zhujiang. Microscopic analysis of shear band in structured clay[J]. Chinese Journal of Geotechnical Engineering, 1998, 20(2): 102-108.
Citation: Jiang Mingjing, Shen Zhujiang. Microscopic analysis of shear band in structured clay[J]. Chinese Journal of Geotechnical Engineering, 1998, 20(2): 102-108.

结构性粘土剪切带的微观分析(英文)

Microscopic analysis of shear band in structured clay

  • 摘要: 土体剪切带的形成与土体逐渐破损理论是当今国际力学界和岩土工程界十分关注的焦点。本文在结构性粘土三轴试验的基础上,首先讨论了剪切带形成的宏观力学条件及其倾角,接着借助于扫描电镜,并采用微观定量测试技术,对剪切带及其周围土体的微观结构进行了分析。结果表明:土体具有足够的结构强度是剪切带形成的条件之一,剪切带的倾角与Roscoe理论不相符;剪切带的厚度在宏观、微观上有差异;剪切带内外的土体,在孔径分布、孔隙比、定向度、各向异率等方面差别很大;剪切面上剪胀与剪缩并存,总体呈剪缩;带内土体亦强烈剪缩;土样宏观却呈轻微剪胀特性。这些成果既验证了沈珠江砌体理论,也为建立土体结构性指标,发展结构性模型及土体逐渐破损理论打下基础。

     

    Abstract: The formation of shear band and the theory of progressive failure of soils are key topics focused greatly both in solid mechanics and geomechanics around the world. In this paper, based on the results of triaxial compression tests on structured samples, macro-mechanical conditions for the formation of shear band and its inclination angle are discussed at first.Then microstructures of the soil inside and outside the shear band are studied by the means of Scanning Electron Microscope and quantitative techniques.It has been confirmed that sufficient structural strength is one of the conditions for the formation of shear band for structured clay.Inclination angle of the shear band is not in accordance with Roscoe′s theory. Thickness of the shear band is different on macro scale and on micro scale. For the soils inside and outside the shear band, a great difference is shown in pore distribution, porosity, orientability, anisotropy, etc.. Both dilatation and contraction exist on the shear plane, while the latter exhibits on the whole. Inside the shear band a great contraction is captured. But the whole sample shows slight dilatation macroscopically. All these results not only verify the Masonry theory proposed by Shen Zhujiang, but also make good bases to determine the indexes of soil structure, and to develop the structural models and progressive failure theory for soils.

     

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