[1] 姜 义, 马梓涵, 申培亮, 等. 废弃混凝土碳化资源化技术研究进展[J]. 硅酸盐学报, 2023, 51(9): 2433-2445. JIANG Y, MA Z H, SHEN P L, et al. Research progress on carbonation technologies for valorising waste concrete: a review[J]. Journal of the Chinese Ceramic Society, 2023, 51(9): 2433-2445 (in Chinese). [2] 鲍玖文, 张洪锐, 方晓龙, 等. 纳米二氧化硅改性再生粗骨料混凝土性能的研究进展[J]. 硅酸盐学报, 2023, 51(8): 2045-2053. BAO J W, ZHANG H R, FANG X L, et al. Properties of recycled coarse aggregate concrete modified by silica nanoparticles: a short review[J]. Journal of the Chinese Ceramic Society, 2023, 51(8): 2045-2053 (in Chinese). [3] 肖建庄, 李佳彬, 兰 阳. 再生混凝土技术研究最新进展与评述[J]. 混凝土, 2003(10): 17-20+57. XIAO J Z, LI J B, LAN Y. Research on recycled aggregate concrete: a review[J]. Concrete, 2003(10): 17-20+57 (in Chinese). [4] 杜 婷, 李惠强, 覃亚伟, 等. 再生混凝土未来发展的探讨[J]. 混凝土, 2002(4): 49-50+44. DU T, LI H Q, QIN Y W, et al. Discussion on the development of regenerative concrete in the future[J]. Concrete, 2002(4): 49-50+44 (in Chinese). [5] 陈鹏博, 李北星, 曾 波. 再生粗骨料粒径对混凝土力学和耐久性能的影响[J]. 硅酸盐通报, 2023, 42(10): 3679-3687+3694. CHEN P B, LI B X, ZENG B. Influence of particle size of recycled coarse aggregate on mechanical properties and durability of concrete[J]. Bulletin of the Chinese Ceramic Society, 2023, 42(10): 3679-3687+3694 (in Chinese). [6] 元成方, 李 爽, 曾 力, 等. 砖砼混合再生粗骨料混凝土力学性能研究[J]. 硅酸盐通报, 2018, 37(2): 398-402. YUAN C F, LI S, ZENG L, et al. Mechanical properties of brick and concrete mixed recycled coarse aggregate concrete[J]. Bulletin of the Chinese Ceramic Society, 2018, 37(2): 398-402 (in Chinese). [7] 张 恺, 林子琪, 尹志刚, 等. 粗骨料替代率对再生混凝土性能影响研究[J]. 人民长江, 2023, 54(9): 230-235. ZHANG K, LIN Z Q, YIN Z G, et al. Effect of coarse aggregate replacement rate on performance of recycled concrete[J]. Yangtze River, 2023, 54(9): 230-235 (in Chinese). [8] 张明明, 王社良, 张世民, 等. 矿物掺合料对再生混凝土力学性能的影响[J]. 硅酸盐通报, 2017, 36(5): 1505-1511. ZHANG M M, WANG S L, ZHANG S M, et al. Effect of mineral admixture on the mechanical properties of the RAC activity[J]. Bulletin of the Chinese Ceramic Society, 2017, 36(5): 1505-1511 (in Chinese). [9] 李 恒, 王家滨, 郭庆军, 等. 矿物掺合料再生混凝土力学性能研究[J]. 硅酸盐通报, 2020, 39(8): 2608-2614. LI H, WANG J B, GUO Q J, et al. Mechanical properties of recycled aggregate concrete with mineral admixture[J]. Bulletin of the Chinese Ceramic Society, 2020, 39(8): 2608-2614 (in Chinese). [10] 陈宗平, 徐金俊, 郑华海, 等. 再生混凝土基本力学性能试验及应力应变本构关系[J]. 建筑材料学报, 2013, 16(1): 24-32. CHEN Z P, XU J J, ZHENG H H, et al. Basic mechanical properties test and stress-strain constitutive relations of recycled coarse aggregate concrete[J]. Journal of Building Materials, 2013, 16(1): 24-32 (in Chinese). [11] 张金喜, 张建华, 邬长森. 再生混凝土性能和孔结构的研究[J]. 建筑材料学报, 2006, 9(2): 142-147. ZHANG J X, ZHANG J H, WU C S. Study on properties and pore structure of recycled concrete[J]. Journal of Building Materials, 2006, 9(2): 142-147 (in Chinese). [12] 赵 华, 刘超群, 黄煌煌, 等. 蒸汽养护对沙漠砂超高性能混凝土强度、抗渗性和孔结构的影响[J]. 混凝土, 2022(12): 38-43. ZHAO H, LIU C Q, HUANG H H, et al. Effect of steam curing on strength, permeability, and pore structure of UHPC made with desert sand[J]. Concrete, 2022(12): 38-43 (in Chinese). [13] 颜晓华, 田俊峰, 王龙飞. 粉煤灰和矿粉对再生混凝土抗腐蚀与抗冻性能的影响研究[J]. 当代化工, 2021, 50(12): 2778-2782. YAN X H, TIAN J F, WANG L F. Study on the influence of fly ash and slag powder on the anti-corrosion and anti-freeze performance of recycled concrete[J]. Contemporary Chemical Industry, 2021, 50(12): 2778-2782 (in Chinese). [14] 刘喜平, 乔宇航. 添加掺合料后再生混凝土的改性试验研究[J]. 陕西理工大学学报(自然科学版), 2017, 33(6): 45-49+54. LIU X P, QIAO Y H. Experimental study on the modification of recycled concrete with admixtures[J]. Journal of Shaanxi University of Technology (Natural Science Edition), 2017, 33(6): 45-49+54 (in Chinese). |