[1] 史焕杰,许薛军,汤左淦.新时代普通国省干线公路网规模结构研究[J].公路交通科技,2019,36(12):127-133+144. SHI H J, XU X J, TANG Z G. Study on scale structure of ordinary national and provincial trunk highway network in new era[J]. Journal of Highway and Transportation Research and Development, 2019, 36(12): 127-133+144 (in Chinese). [2] 陈明明,黄 伟,邱 鹏,等.离子型土壤固化剂固化土基层试验研究[J].安徽工业大学学报(自然科学版),2021,38(1):97-103. CHEN M M, HUANG W, QIU P, et al. Experimental study on solidification of soil base with ionic soil solidification agent[J]. Journal of Anhui University of Technology (Natural Science), 2021, 38(1): 97-103 (in Chinese). [3] 蔡昕辰,刘志彬,张 云,等.相变材料在道路工程中的应用研究进展[J].功能材料,2021,52(12):12013-12021. CAI X C, LIU Z B, ZHANG Y, et al. Research of application of phase change materials in road engineering: a review[J]. Journal of Functional Materials, 2021, 52(12): 12013-12021 (in Chinese). [4] 王旭影,乔京生,赵建业,等.电石渣激发钢渣-矿渣固化淤泥质土的试验研究[J].硅酸盐通报,2022,41(2):733-739. WANG X Y, QIAO J S, ZHAO J Y, et al. Solidification of muddy soil with steel slag and ground granulated blast-furnace slag activated by calcium carbide slag[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(2): 733-739 (in Chinese). [5] 张军辉,丁 乐,张安顺.建筑垃圾再生料在路基工程中的应用综述[J].中国公路学报,2021,34(10):135-154. ZHANG J H, DING L, ZHANG A S. Application of recycled aggregates from construction and demoliton waste in subgrade engineering: a review[J]. China Journal of Highway and Transport, 2021, 34(10): 135-154 (in Chinese). [6] NUNES V A, BORGES P H R. Recent advances in the reuse of steel slags and future perspectives as binder and aggregate for alkali-activated materials[J]. Construction and Building Materials, 2021, 281: 122605. [7] 冀 欣,盛燕萍,路再红,等.掺加钢渣的半刚性基层材料性能[J].长安大学学报(自然科学版),2021,41(4):21-31. JI X, SHENG Y P, LU Z H, et al. Properties of semi-rigid base material with steel slag[J]. Journal of Chang’an University (Natural Science Edition), 2021, 41(4): 21-31 (in Chinese). [8] HOU J W, LV Y, LIU J X, et al. Expansibility of cement paste with tri-component f-CaO in steel slag[J]. Materials and Structures, 2018, 51(5): 113. [9] 林志伟,颜 峰,郭荣鑫,等.富水环境下钢渣骨料体积膨胀行为及抑制方法研究现状综述[J].硅酸盐通报,2019,38(1):118-124. LIN Z W, YAN F, GUO R X, et al. Summary of research status of volume expansion behavior and inhibition methods of steel slag aggregate in water-rich environment[J]. Bulletin of the Chinese Ceramic Society, 2019, 38(1): 118-124 (in Chinese). [10] 许 莹,王巧玲,胡晨光,等.高活性高安定性钢渣制备的研究[J].矿产综合利用,2019(4):106-110. XU Y, WANG Q L, HU C G, et al. Study on the preparation of high activity and stability steel slag[J]. Multipurpose Utilization of Mineral Resources, 2019(4): 106-110 (in Chinese). [11] 汪海风,刘 杰,阙永生,等.建筑垃圾—矿渣地聚合物材料的制备及性能[J].材料科学与工程学报,2016,34(6):895-899. WANG H F, LIU J, QUE Y S, et al. Preparation and properties of geopolymer based on construction waste-slag[J]. Journal of Materials Science and Engineering, 2016, 34(6): 895-899 (in Chinese). [12] XUAN D X, MOLENAAR A A A, HOUBEN L J M. Evaluation of cement treatment of reclaimed construction and demolition waste as road bases[J]. Journal of Cleaner Production, 2015, 100: 77-83. [13] 黄 伟,邱 鹏,赵鲁卿,等.钢渣-土混拌基层材料试验研究及微观机理分析[J].土木与环境工程学报(中英文),2020,42(4):44-52. HUANG W, QIU P, ZHAO L Q, et al. Experimental study and micro-mechanism analysis of steel slag-soil mixed road base material[J]. Journal of Civil and Environmental Engineering, 2020, 42(4): 44-52 (in Chinese). [14] 张耄耋,黄 伟,叶雨尘,等.杂填土及钢渣杂填土基层材料的制备与表征[J].安徽工业大学学报(自然科学版),2021,38(2):144-151+160. ZHANG M D, HUANG W, YE Y C, et al. Preparation and characterization of base materials for miscellaneous fill and steel slag miscellaneous fill[J]. Journal of Anhui University of Technology (Natural Science), 2021, 38(2): 144-151+160 (in Chinese). [15] XUE G, FU Q, XU S, et al. Macroscopic mechanical properties and microstructure characteristics of steel slag fine aggregate concrete[J]. Journal of Building Engineering, 2022, 56: 104742. [16] 邹 敏,沈 玉,刘娟红.钢渣粉在水泥基材料中应用研究综述[J].硅酸盐通报,2021,40(9):2964-2977. ZOU M, SHEN Y, LIU J H. Review on application of steel slag powder in cement-based materials[J]. Bulletin of the Chinese Ceramic Society, 2021, 40(9): 2964-2977 (in Chinese). [17] 吴 旻,谢胜华,葛根旺.碱激发钢渣矿渣复合基层材料的强度特性及微观机制[J].硅酸盐通报,2021,40(8):2640-2646. WU M, XIE S H, GE G W. Strength chatacteristics and micro-mechanism of alkali-activated steel slag-blast furnace slag road base composite material[J]. Bulletin of the Chinese Ceramic Society, 2021, 40(8): 2640-2646 (in Chinese). [18] AL-DAKHEELI H, AREFIN S, BULUT R, et al. Effectiveness of ionic stabilization in the mitigation of soil volume change behavior[J]. Transportation Geotechnics, 2021, 29: 100573. [19] 张 浩,刘秀玉,刘 影.XRD与SEM的钢渣尾渣物理激发机理研究[J].光谱学与光谱分析,2019,39(3):937-941. ZHANG H, LIU X Y, LIU Y. Study on physical excitation mechanism of steel slag tailings by XRD and SEM[J]. Spectroscopy and Spectral Analysis, 2019, 39(3): 937-941 (in Chinese). [20] 力乙鹏,李 婷.土壤固化剂的固化机理与研究进展[J].材料导报,2020,34(s2):1273-1277+1298. LI Y P, LI T. Stability mechanism and research progress of soil stabilizer[J]. Materials Reports, 2020, 34(s2): 1273-1277+1298 (in Chinese). |