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Particle breakage and the mobilized drained shear strengths of sand 被引量:10

Particle breakage and the mobilized drained shear strengths of sand
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摘要 This paper presents particle breakage and the mobilized drained shear strengths of sand with the purpose of clarifying the influence of particle breakage on the mobilized shear strengths of sand. Several drained triaxial tests were carried out on Silica sand No.5 under 3 MPa confining pressure to produce the pre-crushed sands in simulating the high- pressure shear process on soil to result in particle breakage, and then the pre-crushed sands were re- sheared in series of drained triaxial tests to investigate the mobilized strengths of the pre-crushed sands in detecting the influence of particle breakage. It was found that, by deteriorating strain-stress behavior, particle breakage resulted in change of stress-dilataney behavior in translation and rotation of the relation of the dilatancy factor and the effective principal stress ratio. For a given initial void ratio, particle breakage resulted in impairment of dilatancy behavior of soil to be more contractive in deterioration of the mobilized friction angle and the mobilized dilatancy angle and reduction of void ratio. However, particle breakage resulted in increase of the mobilized basic friction angle especially before failure. In addition, the influence of particle breakage on the mobilized strengths was revealed to be influenced by the shear stress-strain state.
出处 《Journal of Mountain Science》 SCIE CSCD 2016年第8期1481-1488,共8页 山地科学学报(英文)
基金 The financial assistance by China Scholarship Council (Grant No. 2011671035) the National Basic Research Program of China (973 Program) (Grant No. 2013CB733201) Key Program of Chinese Academy of Sciences (Grant No. KZZDEW-05-01) One-Hundred Talents Program of Chinese Academy of Sciences (SU Li-jun) CAS "Light of West China" Program (Grant No. Y6R2250250) Youth Fund of Institute of Mountain Hazards and Environment, Chinese Academy of Sciences (Grant No. Y6K2110110)
关键词 Particle breakage Mobilized strengths FRICTION DILATANCY Void ratio SAND 颗粒破碎 排水试验 石英砂 抗剪强度 应力-应变行为 应力-应变状态 剪切强度 三轴试验
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