›› 2016, Vol. 30 ›› Issue (2): 255-258.

• 工程实录 • 上一篇    下一篇

桂林重塑红黏土剪切带试验研究

黄 翔,陈学军,陈 龙,肖桂元   

  1. (桂林理工大学,广西桂林 541004)
  • 收稿日期:2015-03-09 出版日期:2016-04-20 发布日期:2016-04-27
  • 作者简介:黄翔(1988-),男,研究生,研究方向为红黏土。
  • 基金资助:

    国家自然科学基金项目(41262011);广西重点实验室基金(11-kf-02)(11-CX-01)(12-A-01-02)

Shear Band Tests on the Remolded Guilin Red Clay

HUANG Xiang, CHEN Xuejun, CHEN Long, XIAO Guiyuan   

  1. (Guilin University of Technology, Guilin 541004)
  • Received:2015-03-09 Online:2016-04-20 Published:2016-04-27

摘要: 基于红黏土不排水三轴试验, 首先观测了红黏土剪切破坏形态,分析其应力-应变曲线特性,讨论了红黏土剪切带形成条件,并对剪切带倾角进行测试与计算。试验结果表明:三轴不排水试验中,剪切带出现四种不同形式,分别为单一型、次单一型、双缝T型及多缝平行剪切带;红黏土剪切带的倾角量测值与剪切带理论计算结果存在较大差异,量测所得剪切带倾角均大于理论计算值,宜采用Mohr-Coulomb理论预测红黏土剪切带倾角;土体的不均匀性是土样产生剪切带的内因,外部荷载及边界条件是产生剪切带的外因,试样的围压及干密度为剪切带倾角的影响因子。

关键词: 红黏土, 剪切带, 倾角, 影响因子

Abstract: This paper presents the shear band test results on the remolded red clay samples. Form the undrained triaxial test results, the shear failure modes were observed and the stressstrain characteristics were evaluated. The conditions that lead to the formation of the shear band in the sample were discussed and the inclination angle of the shear band was also measured and calculated. The results indicate that, under the undrained triaxial test conditions, the four different shear band shapes can be developed: single band, subsingle band, double bands with "T" shape and more than two parallel bands. There are significant different between the measured and predicted shear band inclination angles and the measured angle is generally greater than the predicted angle. The inclination angle predicted with MohrCoulomb theory is closer to the measured value. The heterogeneous soil property is the main factor leading to the development of the shear band, the loading magnitude and the boundary conditions are also the influence factors of the shear band formations. The inclination angle of the shear band is also influenced by the magnitude of the confining pressure and the dry density of the remolded sample.

Key words: Red Clay, Shear Band, Inclination Angle, Influence Factor