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土工格栅对受污道砟直剪特性影响的试验研究
引用本文:高睿,石知政,刘洋泽鹏,陈静,张荣隆.土工格栅对受污道砟直剪特性影响的试验研究[J].西南交通大学学报,2021,56(6):1185-1191.
作者姓名:高睿  石知政  刘洋泽鹏  陈静  张荣隆
基金项目:国家自然科学基金(51178358,51878521)
摘    要:为探究土工格栅对受黏土污染道砟力学特性的影响,通过对4种法向压力、3种黏土污染程度下土工格栅加固的道砟试样进行一系列直剪试验,对比分析土工格栅对道砟试样剪切强度和剪切变形的影响,研究了考虑黏土污染情况下土工格栅对道砟的加固效果. 研究结果表明:土工格栅增大了洁净及受黏土污染道砟试样的剪切强度,当污染指标VCI (void contamination index)为20%时提升峰值剪切强度最大达到24%;道砟剪切强度表现出典型的非线性特征,非线性强度准则拟合参数与道砟污染程度利用指数函数拟合,拟合结果可作为实际工程受污染道砟强度估计的依据;土工格栅可减小试样的最大剪胀量,同时可减小约0.7°~3.7° 的峰值剪胀角,并且在VCI为20%时土工格栅加固的效果最为明显. 

关 键 词:格栅加固    黏土污染    直剪试验    剪切特性    道砟
收稿时间:2019-11-28

Experimental Study on Effect of Geogrid on Direct Shear Behavior of Contaminated Ballast
GAO Rui,SHI Zhizheng,LIU Yangzepeng,CHEN Jing,ZHANG Ronglong.Experimental Study on Effect of Geogrid on Direct Shear Behavior of Contaminated Ballast[J].Journal of Southwest Jiaotong University,2021,56(6):1185-1191.
Authors:GAO Rui  SHI Zhizheng  LIU Yangzepeng  CHEN Jing  ZHANG Ronglong
Abstract:In order to investigate the effect of geogrid on the mechanical properties of clay-contaminated ballast, a series of direct shear tests were carried out on geogrid-reinforced ballast specimens under four normal pressures and three degrees of clay pollution. The effects of geogrid on the shear strength and shear deformation of ballast specimens were compared and analyzed. The reinforcement effect of geogrid on ballast with consideration of clay pollution was studied. The results show that the geogrid can increase the shear strength of clean and clay-contaminated ballast samples, and the peak shear strength reaches 24% when the void contamination index (VCI) is 20%. Ballast shear strength exhibits typical non-linear characteristics, and the relationship between fitting parameters of non-linear strength criterion and pollution degrees can be fitted by an exponential function. The fitting results can be used as the basis for strength estimation of contaminated-ballast in practical engineering. Meanwhile, geogrid can reduce the maximum dilatancy of the sample; it can also reduce the peak dilatancy angle by about 0.7°~3.7°, and achieve its maximum reinforcement effect at the VCI of 20%. 
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