[1] 肖建庄, 许金校, 罗素蓉, 等. 剑麻纤维对再生骨料混凝土断裂性能的影响[J]. 建筑材料学报, 2023, 26(6): 587-595. XIAO J Z, XU J X, LUO S R, et al. Effect of sisal fiber on fracture performance of recycled aggregate concrete[J]. Journal of Building Materials, 2023, 26(6): 587-595 (in Chinese). [2] 侯莉娜, 何梦迪, 黄 炜, 等. 纤维增强再生混凝土力学性能研究现状及展望[J]. 西安理工大学学报, 2021, 37(3): 403-413. HOU L N, HE M D, HUANG W, et al. Research status and prospect of mechanical properties of fiber-reinforced recycled concrete[J]. Journal of Xi'an University of Technology, 2021, 37(3): 403-413 (in Chinese). [3] 王俊辉, 黄 悦, 杨国涛, 等. 再生混凝土抗压性能研究进展[J]. 材料导报, 2022, 36(增刊1): 278-286. WANG J H, HUANG Y, YANG G T, et al. Research progress on compressive properties of recycled concrete[J]. Materials Reports, 2022, 36(supplement 1): 278-286 (in Chinese). [4] 梁 靖. 钢-聚乙烯混杂纤维再生混凝土力学性能试验研究[D]. 武汉: 武汉工程大学, 2022. LIANG J. Experimental research on mechanical properties of steel-polyethylene hybrid fiber reinforced recycled concrete[D]. Wuhan: Wuhan Institute of Technology, 2022 (in Chinese). [5] CARNEIRO J A, LIMA P R L, LEITE M B, et al. Compressive stress-strain behavior of steel fiber reinforced-recycled aggregate concrete[J]. Cement and Concrete Composites, 2014, 46: 65-72. [6] AFROUGHSABET V, OZBAKKALOGLU T. Mechanical and durability properties of high-strength concrete containing steel and polypropylene fibers[J]. Construction and Building Materials, 2015, 94: 73-82. [7] ZHONG H, ZHANG M Z. Experimental study on engineering properties of concrete reinforced with hybrid recycled tyre steel and polypropylene fibres[J]. Journal of Cleaner Production, 2020, 259: 120914. [8] GAO D Y, YAN H H, YANG L, et al. Analysis of bond performance of steel bar in steel-polypropylene hybrid fiber reinforced concrete with partially recycled coarse aggregates[J]. Journal of Cleaner Production, 2022, 370: 133528. [9] YAN H H, GAO D Y, GUO A F, et al. Monotonic and cyclic bond responses of steel bar with steel-polypropylene hybrid fiber reinforced recycled aggregate concrete[J]. Construction and Building Materials, 2022, 327: 127031. [10] 章文姣, 鲍成成, 孔祥清, 等. 混杂纤维掺量对再生混凝土力学性能的影响研究[J]. 科学技术与工程, 2016, 16(13): 106-112+123. ZHANG W J, BAO C C, KONG X Q, et al. Experimental study on mechanical properties of hybrid fiber basic of recycled concrete[J]. Science Technology and Engineering, 2016, 16(13): 106-112+123 (in Chinese). [11] 赵雅明, 张明飞, 张 振, 等. 混杂纤维增强高强混凝土性能研究[J]. 硅酸盐通报, 2022, 41(7): 2299-2307. ZHAO Y M, ZHANG M F, ZHANG Z, et al. Performance of hybrid fiber reinforced high-strength concrete[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(7): 2299-2307 (in Chinese). [12] GAO D Y, JI D D, GU Z Q, et al. Workability and mechanical properties analysis of hybrid fibers reinforced self-compacting concrete incorporating recycled aggregates based on acoustic emission technique[J]. Structures, 2023, 51: 1722-1741. [13] 安 茹, 陈国雄, 李源康, 等. 基于数字图像相关的玄武岩纤维增强混凝土抗压实验研究[J]. 实验力学, 2023, 38(4): 446-454. AN R, CHEN G X, LI Y K, et al. Experimental investigation of compressive behavior of basalt fiber reinforced concrete by digital image correlation[J]. Journal of Experimental Mechanics, 2023, 38(4): 446-454 (in Chinese). [14] 许 颖, 樊 悦, 王青原, 等. 基于DIC的聚丙烯纤维增强混凝土断裂过程分析[J]. 华中科技大学学报(自然科学版), 2024, 52(2): 103-111. XU Y, FAN Y, WANG Q Y, et al. Fracture process analysis of polypropylene fiber reinforced concrete based on DIC[J]. Journal of Huazhong University of Science and Technology (Natural Science Edition), 2024, 52(2): 103-111 (in Chinese). [15] LUO T, PAN X F, TANG L Y, et al. Research on splitting-tensile properties and failure mechanism of steel-fiber-reinforced concrete based on DIC and AE techniques[J]. Materials, 2022, 15(20): 7150. [16] 孙文昊, 安风娇, 谢 俊, 等. 基于DIC技术分析钢纤维对混凝土轴压性能的影响[J]. 混凝土, 2023(12): 35-38+43. SUN W H, AN F J, XIE J, et al. Study of steel fiber effect on the axial compression property of concrete based on DIC method[J]. Concrete, 2023(12): 35-38+43 (in Chinese). [17] 雷龙坚, 郝 勇, 袁 满, 等. 基于声发射和DIC的碳纳米管水泥基材料抗压力学性能研究[J]. 硅酸盐通报, 2023, 42(12): 4233-4241. LEI L J, HAO Y, YUAN M, et al. Study on compressive mechanical properties of carbon nanotube cement-based materials based on acoustic emission and DIC[J]. Bulletin of the Chinese Ceramic Society, 2023, 42(12): 4233-4241 (in Chinese). [18] QIN F F, CHENG J X, SHENG D F, et al. A phenomenologically based damage model for strain-softening fiber reinforced concrete[J]. Structures, 2023, 58: 105418. [19] 陈 庞, 王政轩, 张健新, 等. 钢纤维增强碱矿渣再生骨料混凝土的力学性能[J/OL]. 土木与环境工程学报(中英文): 1-9 [2022-11-30] [2024-01-29]. http://kns.cnki.net/kcms/detail/50.1218.TU.20221129.2347.002.html. CHEN P, WANG Z X, ZHANG J X, et al. Mechanical properties of steel fiber reinforced alkali slag recycled aggregate concrete[J/OL]. Journal of Civil and Environmental Engineering (in English and Chinese): 1-9 [2022-11-30] [2024-01-29]. http://kns.cnki.net/kcms/detail/50.1218.TU.20221129.2347.002.html (in Chinese). [20] 李晓妮. 硅灰对道路水泥混凝土性能的影响[J]. 公路交通科技(应用技术版), 2020, 16(8): 1-3. LI X N. Influence of silica fume on properties of road cement concrete[J]. Highway and Transportation Science and Technology (Applied Technology Edition), 2020, 16(8): 1-3 (in Chinese). [21] 魏 康, 李 犇, 孙 峤. 替代率对再生混凝土抗压强度影响的微观机理研究[J]. 西安理工大学学报, 2023, 39(1): 110-117. WEI K, LI B, SUN Q. Study of the micro mechanism for the influence of substitution rate on the compressive strength of recycled concrete[J]. Journal of Xi'an University of Technology, 2023, 39(1): 110-117 (in Chinese). [22] 蒋京泰, 李地元, 汪小东, 等. 钢纤维混凝土力学性能优化与裂纹扩展特性试验研究[J]. 实验力学, 2023, 38(4): 455-466. JIANG J T, LI D Y, WANG X D, et al. Experimental study on mechanical properties and crack propagation characteristics of steel fiber reinforced concrete[J]. Journal of Experimental Mechanics, 2023, 38(4): 455-466 (in Chinese). |