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   effects of wet–dry cycle on the shear strength of a sandstone–mudstone particle mixture  
   
نویسنده tang sheng-chuan ,wang jun-jie ,qiu zhen-feng ,tan you-man
منبع international journal of civil engineering - 2019 - دوره : 17 - شماره : 6 - صفحه:921 -933
چکیده    Shear strength of a sandstone–mudstone particle mixture, filled along the bank of a large reservoir and subjected to wet–dry cycle induced by the rise–lower cycle of water level, be affected by the wet–dry cycle. to investigate the effects, two-type triaxial tests, without and with the wet–dry cycle, were carried out. the experimental data indicate that the shear strength, denoted by peak deviator stress (σ1 − σ3)f, angle of shearing resistance φ, nonlinear shear strength indicators φ0 and φd, or linear shear strength indicators φ* and c, is reduced by the wet–dry cycle. with the increment of cycle from 1 to 20, the decrement of shear strength, denoted by the parameters mentioned above, is increasing in a logarithmic relationship. furthermore, the effect is also related to the confining pressure and stress level selected in the tests. based on analyzing experimental data, several logarithmic functions, used to predict the shear strength of the mixture after the wet–dry cycle, were suggested. due to the effect of the wet–dry cycle, stability of a slope, filled in waterfront conditions using the mixture, is reduced.
کلیدواژه shear strength ,wet–dry cycle ,sandstone–mudstone particle mixture ,stability of slope ,experiment
آدرس china merchants chongqing communications research and design institute co., national engineering laboratory for road engineering and disaster prevention and reduction technology in mountainous areas, people’s republic of china, chongqing jiaotong university, chongqing engineering research center of diagnosis technology and instruments of hydro-construction, people’s republic of china. chongqing three gorges university, chongqing engineering research center of disaster prevention and control for banks and structures in three gorges reservoir area, people’s republic of china, key laboratory of hydraulic and waterway engineering of ministry of education, chongqing jiaotong university, people’s republic of china, chongqing jiaotong university, national engineering research center for inland waterway regulation, people’s republic of china
 
     
   
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