[1] 于 伟,折学森.长江三角洲区域性软土路基沉降特性研究[J].安全与环境学报,2016,16(6):102-108. YU W,ZHE X S.On the particular settlement features of the soft soil subgrade in the area of Yangtze River Delta[J].Journal of Safety and Environment,2016,16(6):102-108 (in Chinese). [2] 秦世伟,陆小锋,张国军.水泥土搅拌法加固淤泥质黏土的试验研究[J].中外公路,2019,39(5):256-260. QIN S W,LU X F,ZHANG G J.Experimental study on mucky clay strengthened by cement-soil mixed method[J].Journal of China and Foreign Highway,2019,39(5):256-260 (in Chinese). [3] LIU J K,WANG T L,TIAN Y H.Experimental study of the dynamic properties of cement- and lime-modified clay soils subjected to freeze-thaw cycles[J].Cold Regions Science and Technology,2010,61(1):29-33. [4] 慕焕东,邓亚虹,李荣建.干湿循环对地裂缝带黄土抗剪强度影响研究[J].工程地质学报,2018,26(5):1131-1138. MU H D,DENG Y H,LI R J.Experimental study on strength characteristics of loess at ground fissures in Xi’an under action of dry and wet cycle[J].Journal of Engineering Geology,2018,26(5):1131-1138 (in Chinese). [5] 周春梅,王琴华,张静波,等.干湿和冻融循环对压实黄土路用性能影响的试验研究[J].防灾减灾工程学报,2019,39(3):533-540. ZHOU C M,WANG Q H,ZHANG J B,et al.Experimental study on the influence of dry-wet and freeze-thaw cycles on compacted loess road performance[J].Journal of Disaster Prevention and Mitigation Engineering,2019,39(3):533-540 (in Chinese). [6] 赵春彦,黄启友,郎 锋,等.单因素和多因素作用下的水泥土强度评估模型试验研究[J].铁道科学与工程学报,2018,15(11):2788-2795. ZHAO C Y,HUANG Q Y,LANG F,et al.Experimental study on strength evaluation model of cement soil under single factor and multi factors[J].Journal of Railway Science and Engineering,2018,15(11):2788-2795 (in Chinese). [7] 徐丽娜,牛 雷,张 颖,等.冻融循环作用下玄武岩纤维水泥土力学性质研究[J].工业建筑,2020,50(3):109-113. XU L N,NIU L,ZHANG Y,et al.Effect of freeze-thaw cycling on the mechanical properties of fiber-reinforced cemented soil[J].Industrial Construction,2020,50(3):109-113 (in Chinese). [8] 李芳菲,华 渊,刘文化,等.干湿循环条件下水泥固化疏浚淤泥的物理力学特性[J].硅酸盐通报,2019,38(2):344-350. LI F F,HUA Y,LIU W H,et al.Physico-mechanical characteristics of cement-solidified dredged sludge under drying and wetting cycle[J].Bulletin of the Chinese Ceramic Society,2019,38(2):344-350 (in Chinese). [9] 陈四利,史建军,于 涛,等.冻融循环对水泥土力学特性的影响[J].应用基础与工程科学学报,2014,22(2):343-349. CHEN S L,SHI J J,YU T,et al.Effect of freezing-thawing cycle on the mechanical behaviors of cemented soil[J].Journal of Basic Science and Engineering,2014,22(2):343-349 (in Chinese). [10] 汪洪星,柯 睿,谈云志,等.固化淤泥土的干湿循环劣化特征[J].硅酸盐通报,2018,37(9):2704-2709. WANG H X,KE R,TAN Y Z,et al.Deterioration characters of solidified/stabilized sediments by dry-wet circulations[J].Bulletin of the Chinese Ceramic Society,2018,37(9):2704-2709 (in Chinese). [11] YAN C G,ZHANG Z Q,JING Y L.Characteristics of strength and pore distribution of lime-flyash loess under freeze-thaw cycles and dry-wet cycles[J].Arabian Journal of Geosciences,2017,10(24):1-10. [12] 马军涛,王大广,陈 浩,等.复杂环境下水泥改性生土砌块的导热系数及抗压强度分析[J].新型建筑材料,2019,46(12):113-116. MA J T,WANG D G,CHEN H,et al.Analysis of thermal conductivity and compressive strength of cement modified raw soil blocks in complex environment[J].New Building Materials,2019,46(12):113-116 (in Chinese). [13] LI L,SHAO W,LI Y D,et al.Effects of climatic factors on mechanical properties of cement and fiber reinforced clays[J].Geotechnical and Geological Engineering,2015,33(3):537-548. [14] 许 雷,鲁 洋,薛 洋,等.冻融循环下水泥改性膨胀土物理力学特性研究[J].长江科学院院报,2017,34(4):87-91+103. XU L,LU Y,XUE Y,et al.Physico-mechanical properties of Cement-modified expansive soil under Freeze-thaw cycles[J].Journal of Yangtze River Scientific Research Institute,2017,34(4):87-91+103 (in Chinese). [15] 安 然,孔令伟,黎澄生,等.炎热多雨气候下花岗岩残积土的强度衰减与微结构损伤规律[J].岩石力学与工程学报,2020,39(9):1902-1911. AN R,KONG L W,LI C S.Strength attenuation and microstructure damage of granite residual soil in hot and rainy climate[J].Journal of Rock Mechanics and Engineering,2020,39(9):1902-1911 (in Chinese). |