| [1] |
陈忠平, 孙仲均, 钱争晖. 泡沫轻质土充填技术及应用[J]. 施工技术, 2011, 40(10): 74-76.
|
|
CHEN Z P, SUN Z J, QIAN Z H. Filling technology and application of foamed light-weight soil[J]. Construction Technology, 2011, 40(10): 74-76 (in Chinese).
|
| [2] |
李宏泉, 赵江, 魏丽敏, 等. 沟槽回填泡沫轻质土管道应力与压力分析[J]. 公路, 2021, 66(9): 111-117.
|
|
LI H Q, ZHAO J, WEI L M, et al. Research on stress and pressure around the pipe with trench backfill of foamed lightweight soil[J]. Highway, 2021, 66(9): 111-117 (in Chinese).
|
| [3] |
赵正峰, 王笑风, 王国栋, 等. 工业废渣复合胶凝材料泡沫轻质土制备及性能[J]. 硅酸盐通报, 2022, 41(6): 2108-2116.
|
|
ZHAO Z F, WANG X F, WANG G D, et al. Preparation and properties of industrial waste residue composite cementitious foamed lightweight soil[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(6): 2108-2116 (in Chinese).
|
| [4] |
袁化强, 朱登元, 张宏庆, 等. 三轴应力条件下泡沫轻质土压缩特性[J]. 硅酸盐通报, 2020, 39(10): 3379-3385.
|
|
YUAN H Q, ZHU D Y, ZHANG H Q, et al. Compression characteristics of foamed lightweight soil under triaxial stress[J]. Bulletin of the Chinese Ceramic Society, 2020, 39(10): 3379-3385 (in Chinese).
|
| [5] |
张洪智, 梁取平, 邵明扬, 等. 磨细循环流化床粉煤灰对泡沫轻质土力学性能和孔结构的影响[J]. 材料导报, 2024, 38(22): 50-56.
|
|
ZHANG H Z, LIANG Q P, SHAO M Y, et al. Influence of circulating refined fluidized bed fly ash on mechanical properties and pore structure of foamed concrete[J]. Materials Reports, 2024, 38(22): 50-56 (in Chinese).
|
| [6] |
朱云升, 华瑞阳, 陈庸, 等. 石灰石粉对泡沫轻质土性能影响研究[J]. 武汉理工大学学报(交通科学与工程版), 2025, 49(2): 356-361.
|
|
ZHU Y S, HUA R Y, CHEN Y, et al. Study on the effect of limestone powder on the performance of foamed lightweight concrete[J]. Journal of Wuhan University of Technology (Transportation Science & Engineering), 2025, 49(2): 356-361 (in Chinese).
|
| [7] |
REN C D, WANG L L, KONG D W, et al. Performance study and effect mechanism of red mud manufactured sand foam concrete using a single-factor experiment[J]. Construction and Building Materials, 2025, 458: 139629.
|
| [8] |
杜晓瞳, 胡魁, 张桃利, 等. 黄河砂制备再生混凝土的界面增强方法研究[J]. 市政技术, 2023, 41(8): 96-102.
|
|
DU X T, HU K, ZHANG T L, et al. Research on interface strengthening method for preparing recycled concrete from Yellow River sand[J]. Journal of Municipal Technology, 2023, 41(8): 96-102 (in Chinese).
|
| [9] |
范嘉慧, 张艺珂, 元成方. 黄河砂高延性水泥基复合材料的冻融损伤特性与模型研究[J]. 硅酸盐通报, 2025, 44(6): 2060-2069.
|
|
FAN J H, ZHANG Y K, YUAN C F. Freeze-thaw damage characteristic and modeling of Yellow River sand high-ductility engineered cementitious composites[J]. Bulletin of the Chinese Ceramic Society, 2025, 44(6): 2060-2069 (in Chinese).
|
| [10] |
王立霞. 黄河砂在大流动性混凝土中的应用研究[J]. 人民黄河, 2017, 39(8): 106-111.
|
|
WANG L X. Application of Yellow River sand in high flowing concrete[J]. Yellow River, 2017, 39(8): 106-111 (in Chinese).
|
| [11] |
张婧, 徐少辉, 王帅, 等. 黄河下游粉砂土掺量对泡沫轻质土性能的影响[J]. 人民黄河, 2025, 47(6): 156-160.
|
|
ZHANG J, XU S H, WANG S, et al. Impact of lower Yellow River silt incorporation on the properties of foamed light weight soil[J]. Yellow River, 2025, 47(6): 156-160 (in Chinese).
|
| [12] |
中华人民共和国住房和城乡建设部. 气泡混合轻质土填筑工程技术规程: CJJ/T 177—2012 [S]. 北京: 中国建筑工业出版社, 2012.
|
|
Ministry of Housing and Urban-Rural Development of the People’s Republic of China. Technical specification for foamed mixture lightweight soil filling engineering: CJJ/T 177—2012 [S]. Beijing: China Architecture & Building Press, 2012 (in Chinese).
|
| [13] |
李学魁, 韩同睿, 蒋德宝, 等. 黄河超细砂在干硬性混凝土中的应用研究及作用机理[J]. 材料导报, 2025, 39(增刊1): 194-198.
|
|
LI X K, HAN T R, JIANG D B, et al. Study on the application of Yellow River ultrafine sand in hardening concrete and its mechanism of action[J]. Materials Reports, 2025, 39(supplement 1): 194-198 (in Chinese).
|
| [14] |
闵永涛, 贺晶晶, 胡炜, 等. 机制砂对混凝土拌和物含气特性影响规律研究[J]. 中国农村水利水电, 2023(3): 218-222.
|
|
MIN Y T, HE J J, HU W, et al. The influence of the manufactured sand on the air content characteristics of concrete mixture[J]. China Rural Water and Hydropower, 2023(3): 218-222 (in Chinese).
|
| [15] |
中华人民共和国交通运输部. 公路路基设计规范: JTG D30—2015 [S]. 北京: 人民交通出版社, 2015.
|
|
Ministry of Transport of the People’s Republic of China. Specifications for design of highway subgrades: JTG D30—2015 [S]. Beijing: People’s Communications Publishing House Co., Ltd., 2015 (in Chinese).
|
| [16] |
杨华全,董维佳,王仲华.掺矿渣粉及粉煤灰混凝土微观性能试验研究[J].长江科学院院报, 2005, 22(1): 46-49.
|
|
YANG H Q, DONG W J, WANG Z H. Test study on micro-properties of concrete mixed with slag and fly-ash[J]. Journal of Yangtze River Scientific Research Institute, 2005, 22(1): 46-49 (in Chinese).
|
| [17] |
吴蓬,吕宪俊,胡术刚,等.粒化高炉矿渣成分和细度对活性的影响[J].硅酸盐通报,2014,33(10):2572-2577.
|
|
WU P, LYU X J, HU S G, et al. Influence of composition and fineness of granulated blast furnace slags on activation index[J]. Bulletin of the Chinese Ceramic Society, 2014,33(10): 2572-2577 (in Chinese).
|
| [18] |
郭志翔. 水泥中石膏对“水泥-无碱液体速凝剂-水” 体系相容性的影响研究[D]. 北京: 北京建筑大学, 2024.
|
|
GUO Z X. Study on the effect of gypsum in cement on the compatibility of "cement-alkali-free liquid accelerator-water" system[D]. Beijing University of Civil Engineering and Architecture, 2024 (in Chinese).
|
| [19] |
李洪亮, 沈可. 泡沫轻质土的干缩特性试验研究[J]. 低温建筑技术, 2016, 38(9): 106-107.
|
|
LI H L, SHEN K. Experimental study on drying shrinkage characteristics of foamed light soil[J]. Low Temperature Architecture Technology, 2016, 38(9): 106-107 (in Chinese).
|
| [20] |
GUO R, XUE C H, GUO W C, et al. Preparation of foam concrete from solid wastes: physical properties and foam stability[J]. Construction and Building Materials, 2023, 408: 133733.
|