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Bimonthly, started in 1957
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Shanxi Provincial Education Department
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Taiyuan University of Technology
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Ed. Office of Journal of TYUT
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SUN Hongbin
ISSN: 1007-9432
CN: 14-1220/N
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  • Study on Mineral Composition and Mechanical Properties of Clayey Slip Soil of Soft Rock Landslide in Shanxi Coal Measures
    DOI:
    10.16355/j.tyut.1007-9432.20230320
    Received:
    Accepted:
    abstract:
    PurposesFor the Shanxi Coal Measuresthe slip soil in coal bearing soft rock landslides generallycontains a large number of clay mineralsand is a typical slip soil with certain expansibility and is different from the conventional slip soil in mechanical properties.MethodsFour typical cases of clayey slip soil in coal bearing soft rock landslides in the Yellow River Basin in Shanxi Province are taken as research objects to reveal the unique mechanical properties. The research methods include X-ray diffraction testslow shear testand free expansion rate test.FindingsThe results show that1The clay minerals of the clayey slip soil are mainly composed of montmorillonitekaoliniteilliteand chlorite. The percentage contents of montmorillonite mineral quality are 40.95%for a landslide in Dongshan),38.30%for a landslide in Linxian),34.52%for a landslide in Xiangning),and 17.65%for a landslide in Zezhou),respectively. 2The cohesion and internal friction angle of clayey slip soil show two modes with water contentnegative index/negative correlation. The content range of the montmorillonite that affects the regular pattern is 17.65%~34.52%3The attenuation degree of clayey slip soil shear strength shows two correlation with montmorillonite contentpositive/negative correlation. The critical value of the montmorillonite content that affects the degree of attenuation is 34.52%.ConclusionsFrom the perspective of mineral compositionthe attenuation law of clayey slip soil shear strength is expounded and the unique strength property of this kind of slip soil is revealed. This research has certain theoretical significance for further revealing the landslide-induced disaster-causing mechanism of coal bearing soft rock landslides in the Yellow River Basin region.
    Keywords:
    clayey slip soil; clay minerals; montmorillonite; shear strength; expansion property;

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