参考文献/References:
[1]徐伟. 浅析旧路拓宽存在的问题及处理措施[J].城市道桥与防洪, 2017(12): 34-36, 59.
XU Wei. Elementaryanalysis on existing problems and treatment measures in widening of old road[J].Urban Roads Bridges & Flood Control, 2017(12): 34-36, 59.
[2]陈忠平, 王树林. 气泡混合轻质土及其应用综述[J].中外公路, 2003(5): 117-120.
CHEN Zhongping, WANG Shulin. Review of bubble mixed light soil and its application[J].Journal of China & Foreign Highway, 2003(5): 117-120.
[3]HORPIBULSUK S, SUDDEEPONG A. Strength and compressibility of lightweight cemented clays[J].Applied Clay Science, 2012, 69: 11-21.
[4]NERAMITKORNBURI A, HORPIBULSUK S, SHEN S L, et al. Engineering properties of lightweight cellular cemented clay-fly ash material[J].Soils and Foundations, 2015, 55(2): 471-483.
[5]DU Y, YU B, LIU K, et al. Physical, hydraulic, and mechanical properties of clayey soil stabilized by lightweight alkali-activated slag geopolymer[J].Journal of Materials in Civil Engineering, 2016, 29: 1-10.
[6]SUKSIRIPATTANAPONG C, HORPIBULSUK S, BOONGRASAN S, et al. Unit weight, strength and microstructure of a water treatment sludge-fly ash lightweight cellular geopolymer[J].Construction & Building Materials, 2015, 94(30): 807-816.
[7]DU Y,HORPIBULSUK S, WEI M L, et al. Modeling compression behavior of cement-treated zinc-contaminated clayey soils[J].Soils and Foundations. 2014. 54(5): 1018-1026.
[8]NERAMITKORNBURI A, HORPIBULSUK S, SHEN S L,et al. Durability against wetting-drying cycles of sustainable Lightweight Cellular Cemented construction material comprising clay and fly ash wastes[J].Construction & Building Materials, 2015, 77(15): 41-49.
[9]陈金威, 刘勇, 石苏意, 等. 不同掺料泡沫轻质土的强度特性[J].长沙理工大学学报(自然科学版), 2016, 13(4): 15-22.
CHEN Jinwei, LIU Yong, SHI Suyi, et al. Strength characteristics of foam lightweight soil with different admixture[J].Journal of Changsha University of Science & Technology(Natural Science), 2016, 13(4): 15-22.
[10]乔欢欢, 卢忠远, 严云, 等. 掺合料粉体种类对泡沫混凝土性能的影响[J].中国粉体技术, 2008, 14(6): 38-41.
QIAO Huanhuan, LU Zhongyuan, YAN Yun, et al. Influence of filler type on properties of foamed concrete[J].China Powder Science and Technology, 2008, 14(6):38-41.
[11]BAGHERI A, SAMEA S A. Parameters influencing the stability of foamed concrete[J].Journal of Materials in Civil Engineering, 2018, 30(6): 1-7.
[12]苏谦, 赵文辉, 王亚威, 等. 泡沫轻质混凝土单轴循环加卸载试验研究[J].铁道标准设计, 2016, 60(8): 21-25.
SU Qian, ZHAO Wenhui, WANG Yawei, et al. Experiment of foamed lightweight concrete under uniaxial cyclic loading and unloading conditions[J].Railway Standard Design, 2016, 60(8): 21-25.
[13]黄振宇, 隋莉莉, 王芳. 超轻质高延性水泥基材料力学性能研究[J].西安建筑科技大学学报(自然科学版), 2019, 51(2): 223-229.
HUANG Zhenyu, SUI Lili, WANG Fang. Mechanical properties of ultra-lightweight high ductility cement composites[J].J. of Xi’an Univ. of Arch. & Tech.(Natural Science Edition), 2019, 51(2): 223-229.
[14]周红, 车轶, 陈庚, 等. 混凝土立方体与圆柱体劈裂抗拉强度尺寸效应研究[J].混凝土, 2010(8): 13-15.
ZHOU Hong, CHE Yi, CHEN Geng, et al. Size effect on tensile splitting strength of concrete cubes and cylinders[J].Concrete, 2010(8): 13-15.
[15]LU Y, LI Q. About the dynamic uniaxial tensile strength of concrete-like materials[J].International Journal of Impact Engineering, 2011, 38(4): 171-180.
[16]ZHENG W, KWAN A, LEE P. Direct tension test of concrete[J].Materials Journal, 2001, 98(1): 63-71.
[17]徐礼华, 刘素梅, 李彦强. 丹江口水库区岩石软化性能试验研究[J].岩土力学, 2008(5): 1430-1434.
XU Lihua, LIU Sumei, LI Yanqiang. Experimental studies on rock softening properties in Danjiangkou reservoir area[J].Rock and Soil Mechanics, 2008(5): 1430-1434.
[18]KAMON M, NONTANANANDH S, KATSUMI T. Utilization of stainless-steel slag by cement hardening[J].Soils and Foundations, 1993, 33(3): 118-129.