参考文献/References:
[1] 肖杰, 屈文俊, 朱鹏, 等.砂土与硫酸腐蚀混凝土接触面剪切试验研究[J]. 岩土力学, 2017, 38(9): 2613- 2620.
XIAO Jie, QU Wenjun, ZHU Peng, et al. Experimental study of interface shear behaviors between sand and concrete corroded by sulfuric acid[J]. Rock and Soil Mechanics, 2017, 38(9): 2613-2620.
[2]王伟, 卢廷浩, 宰金珉, 等.土与混凝土接触面反向剪切单剪试验[J]. 岩土力学, 2009, 30(5): 1303-1306.
WANG Wei, LU Tinghao, ZAI Jinmin, et al. Negative shear test on soil-concrete interface using simple shear apparatus[J]. Rock and Soil Mechanics, 2009, 30(5): 1303-1306.
[3]冯大阔, 张建民.剪切路径对土与结构接触面三维循环特性影响研究[J]. 土木工程学报, 2018, 51(9): 84- 91, 101.
FENG Dakuo, ZHANG Jianmin.Influence of shear paths on 3D cyclic behaviors of the gravel-structure interface[J]. China Civil Engineering Journal, 2018, 51(9): 84-91,101.
[4]陈琛, 冷伍明, 杨奇, 等.混凝土桩-泥皮-砂土接触面力学特性试验研究[J]. 岩土力学, 2018, 39(7): 2461-2472.
CHEN Chen, LENG Wuming, YANG Qi, et al. Experimental study of mechanical properties of concrete pile-slurry-sand interface[J]. Rock and Soil Mechanics, 2018, 39(7): 2461-2472.
[5]成浩, 王, 张家生, 等.颗粒粒度与级配对碎石料与结构接触面剪切特性的影响[J]. 中南大学学报(自然科学版), 2018, 49(4): 925-932.
CHENG Hao, WANG Xuan, ZHANG Jiasheng, et al.Effects of particle size and gradation on shear behavior of interface between crushed stone and structure[J]. Journal of Central South University(Science and Technology), 2018, 49(4): 925-932.
[6]SU L J, ZHOU W H, CHEN W B, et al.Effects of relative roughness and mean particle size on the shear strength of sand-steel interface[J]. Measurement, 2018, 122: 339-346.
[7]HOSSAIN M A, YIN J H.Behavior of a Pressure-Grouted Soil-Cement Interface in Direct Shear Tests[J]. International Journal ofGeomechanics, 2014, 14(1): 101-109.
[8]王伟, 卢廷浩, 周爱兆.土与混凝土接触面反向单剪本构模型[J]. 土木建筑与环境工程, 2011, 33(1): 59-64.
WANG Wei, LU Tinghao, ZHOU Aizhao.Constitutive
Model for Negative Simple-sheared Soil-concrete Interface[J]. Journal of Civil Architectural and Environmental Engineering, 2011, 33(1): 59-64.
[9]杨庆光, 梁凌川, 杨诒飞, 等.填土中锚固体-土接触面剪切特性研究[J]. 岩土工程学报, 2018, 40(S2): 235-239.
YANG Qingguang, LIANG Lingchuan, YANG Yifei, et al.Shear characteristics of anchoring solid-soil interface in filled soil[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(S2): 235-239.
[10]赵春风, 吴悦, 赵程, 等.考虑卸荷效应的砂土-混凝土接触面剪切特性影响研究[J]. 岩石力学与工程学报, 2018, 37(4): 1020-1029.
ZHAO Chunfeng, WU Yue, ZHAO Cheng, et al. Effect of unloading on shear behavior of interface between sand and concrete[J]. Chinese Journal of Rock Mechanics and Engineering, 2018, 37(4): 1020-1029.
[11]赵春风, 龚辉, 赵程, 等.考虑法向应力历史的黏土-混凝土界面弹塑性分析[J]. 岩石力学与工程学报, 2012, 31(4): 848-855.
ZHAO Chunfeng, GONG Hui, ZHAO Cheng, et al.Elastoplastic analysis of interface between clay and concrete considering effect of normal stress history[J]. Chinese Journal of Rock Mechanics and Engineering, 2012, 31(4): 848-855.
[12]曹卫平, 陆清元, 梁鹏.常/变法向应力作用下密砂-混凝土接触面剪切力学性状试验研究[J]. 建筑结构, 2015, 45(1): 82-86.
CAO Weiping, LU Qingyuan, LIANG Peng. Experimental study on shear mechanical properties on dense sand-concrete interface under constant and varying normal stress[J]. Building Structure, 2015, 45(1): 82- 86.
[13]梁鹏, 曹卫平, 陆清元.常/变法向应力下松砂-混凝土接触面剪切力学性状试验研究[J].建筑结构,2014,44(8):61- 65.
LIANG Peng, CAO Weiping, LU Qingyuan. Experimental research on shear properties of loose sand-concrete interface under constant /varying normal stress[J]. Building Structure, 2014, 44(8): 61-65.
[14]陆勇, 周国庆.粗粒土与结构接触面作用机理及本构规律分类[J].工业建筑, 2012, 42(S1): 468- 471.
LU Yong, ZHOU Guoqing.Interaction mechanism and constitutive law’s classification of coarse granular soil-structure interface[J]. Industrial Construction, 2012, 42(S1): 468-471.
[15]干飞, 叶晓明, 阴可, 等.基于局部应力变形测试方法的土-结构物渐进破坏试验研究[J]. 岩石力学与工程学报, 2018, 37(3): 734- 742.
GAN Fei, YE Xiaoming,YIN Ke, et al.Experimental study on progressive failure of soil-structure interfaces based on a new measuring method of local stress and displacement[J]. Chinese Journal of Rock Mechanics and Engineering, 2018, 37(3): 734-742.
[16]孔洋, 阮怀宁, 黄雪峰.黄土丘陵沟壑区压实回填土地基沉降计算方法[J]. 岩土工程学报, 2018, 40(S1): 218- 223.
KONG Yang, RUAN Huaining, HUANG Xuefeng. Method for calculating foundation settlement of compacted backfill in hilly and gully regions of loess[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(S1): 218-223.
[17]杜伟飞, 郑建国, 刘争宏, 等.黄土高填方地基沉降规律及排气条件影响[J]. 岩土力学, 2019, 40(1): 325-331.
DU Weifei, ZHENG Jianguo, LIU Zhenghong, et al. Settlement behavior of high loess-filled foundation and impact from exhaust conditions[J]. Rock and Soil Mechanics, 2019, 40(1): 325-331.
[18]黄雪峰, 孔洋, 李旭东, 等.压实黄土变形特性研究与应用[J].岩土力学, 2014, 35(S2): 37-44.
HUANG Xuefeng, KONG Yang, LI Xudong, et al. Study and application of deformation characteristics of compacted loess[J]. Rock and Soil Mechanics, 2014, 35(S2): 37-44.
[19]乔来军, 周国庆, 商翔宇, 等.不同含水量黄土-砂浆接触特性试验应用研究[J]. 地下空间与工程学报, 2010, 6(S2): 1660-1664.
QIAO Laijun, ZHOU Guoqing, SHANG Xiangyu, et al.Study on the influence of water content on mechanical behavior of loess-sand mortar interface and its application[J]. Chinese Journal of Underground Space and Engineering, 2010, 6(S2): 1660-1664.
[20]张磊, 刘慧, 王铁行.固结与不固结条件下黄土-混凝土接触面剪切试验[J]. 岩土力学, 2018, 39(S2): 238-244.
ZHANG Lei, LIU Hui, WANG Tiehang.Shear tests on loess-concrete interface under consolidation and unconsolidation conditions[J]. Rock and Soil Mechanics, 2018, 39(S2): 238-244.
[21]中华人民共和国水利部.土工试验方法标准: GB/T50123-1999[S]. 北京: 中国计划出版社, 1999.
The Ministry of Water Resources of the People’s Republic of China.Standard for soil test method: GB/T 50123-1999 [S]. Beijing: China Planning Press, 1999.
[22]杜时贵, 葛军荣.岩石节理粗糙度系数JRC测量新方法[J]. 西安公路交通大学学报, 1999, 19(2): 10-13.
DU Shigui, GE Junrong.The new measuring method of joint roughness coefficients[J]. Journal of Xi’an Highway University, 1999, 19(2): 10-13.
相似文献/References:
[1]王铁行,王娟娟,张龙党.冻结作用下非饱和黄土水分迁移试验研究[J].西安建筑科技大学学报(自然科学版),2012,44(01):7.[doi:10.15986/j.1006-7930.2012.01.002]
WANG Tie-hang,WANG Juan-juan,ZHANG Long-dang.Experimental research on moisture migration infreezing unsaturated loess[J].J. Xi’an Univ. of Arch. & Tech.(Natural Science Edition),2012,44(03):7.[doi:10.15986/j.1006-7930.2012.01.002]
[2]蔡东艳,邵生俊,王桃桃.黄土的三轴剪切吸力变化特性与结构性的分析[J].西安建筑科技大学学报(自然科学版),2014,46(01):76.[doi:10.15986/j.1006-7930.2014.01.014]
CAI DongyanSHAO ShengjunWANG Taotao.Analysis on structure and suction property of loess under tri-axial compression[J].J. Xi’an Univ. of Arch. & Tech.(Natural Science Edition),2014,46(03):76.[doi:10.15986/j.1006-7930.2014.01.014]
[3]金 鑫,王铁行,于康康,等.碱液加固黄土体的工程性质研究[J].西安建筑科技大学学报(自然科学版),2016,48(03):383.[doi:10.15986/j.1006-7930.2016.03.013]
JIN Xin,WANG Tiehang,YU Kangkang,et al.Research of engineering properties for sodium hydroxide solution reinforced loess[J].J. Xi’an Univ. of Arch. & Tech.(Natural Science Edition),2016,48(03):383.[doi:10.15986/j.1006-7930.2016.03.013]
[4]张继文,于永堂,李 攀,等.黄土削峁填沟高填方地下水监测与分析[J].西安建筑科技大学学报(自然科学版),2016,48(04):477.[doi:10.15986/j.1006-7930.2016.04. 003]
ZHANG Jiwen,YU Yongtang,LI Pan,et al.Groundwater monitoring and analysis of high fill foundation[J].J. Xi’an Univ. of Arch. & Tech.(Natural Science Edition),2016,48(03):477.[doi:10.15986/j.1006-7930.2016.04. 003]