[1] 王德志,陈 振,孟云芳.氯盐冻融作用下粉煤灰混凝土抗渗抗冻性研究[J].人民黄河,2017,39(12):131-133+138. WANG D Z, CHEN Z, MENG Y F. Research on permeability and frost resistance of fly ash concrete under chloride and freeze-thawing[J]. Yellow River, 2017, 39(12): 131-133+138 (in Chinese). [2] 徐存东,李 振,朱兴林,等.盐冻侵蚀作用下混凝土力学性能变化研究[J].人民黄河,2019,41(9):132-136. XU C D, LI Z, ZHU X L, et al. Study on mechanical properties of concrete under salt-frost erosion[J]. Yellow River, 2019, 41(9): 132-136 (in Chinese). [3] 洪锦祥,缪昌文,刘加平,等.冻融损伤混凝土力学性能衰减规律[J].建筑材料学报,2012,15(2):173-178. HONG J X, MIAO C W, LIU J P, et al. Degradation law of mechanical properties of concrete subjected to freeze-thaw cycles[J]. Journal of Building Materials, 2012, 15(2): 173-178 (in Chinese). [4] 王海良,钟耀海,杨新磊.玄武岩纤维混凝土研究进展与建议[J].工业建筑,2013,43(s1):639-643. WANG H L, ZHONG Y H, YANG X L. Research progress and suggestions of basalt fiber reinforced concrete[J]. Industrial Construction, 2013, 43(s1): 639-643 (in Chinese). [5] 郭子麟.单面冻融条件下玄武岩纤维混凝土孔结构及力学性能研究[D].呼和浩特:内蒙古工业大学,2018. GUO Z L. Research on pore structure and mechanical properties of basalt fiber reinforced concrete under freezing and thawing conditions[D]. Hohhot: Inner Mongolia University of Tehchnology, 2018 (in Chinese). [6] 卢海龙,董玉文,何 磊,等.混掺玄武岩纤维与引气剂对混凝土抗冻性能和力学性能的影响[J].混凝土与水泥制品,2020(7):51-54. LU H L, DONG Y W, HE L, et al. Research on the influence of air-entraining agent and basalt fiber on frost resistance and mechanical properties of concrete[J]. China Concrete and Cement Products, 2020(7): 51-54 (in Chinese). [7] 郭少龙,鹿 群,林永良,等.冻融循环对玄武岩纤维水泥土力学性能的影响试验[J].水利水电科技进展,2020,40(3):36-43. GUO S L, LU Q, LIN Y L, et al. Experiments on influence of freeze-thaw cycles on mechanical properties of basalt fiber cement soil[J]. Advances in Science and Technology of Water Resources, 2020, 40(3): 36-43 (in Chinese). [8] 赵燕茹,高 健,王 磊,等.单面冻融下玄武岩纤维混凝土抗冻性能研究[J].混凝土,2020(4):70-73. ZHAO Y R, GAO J, WANG L, et al. Study on frost resistance of basalt fiber concrete under unilateral freezing and thawing[J]. Concrete, 2020(4): 70-73 (in Chinese). [9] KHANFOUR M A, EL REFAI A. Effect of freeze-thaw cycles on concrete reinforced with basalt-fiber reinforced polymers (BFRP) bars[J]. Construction and Building Materials, 2017, 145: 135-146. [10] 孙一民,张 健,李忠良.浸胶短切BFRC抗冻融性能试验[J].混凝土,2020(2):25-27+32. SUN Y M, ZHANG J, LI Z L. Experimental study on freeze-thaw resistance of soaking short-cut BFRC[J]. Concrete, 2020(2): 25-27+32 (in Chinese). [11] TAHA A, ALNAHHAL W, ALNUAIMI N. Bond durability of basalt FRP bars to fiber reinforced concrete in a saline environment[J]. Composite Structures, 2020, 243: 112277. [12] 齐桂华.玄武岩纤维增强混凝土的抗冻性试验研究[D].长春:吉林大学,2016. QI G H. Experimental study on freezing-thawing resistance of basalt fiber reinforced concrete[D]. Changchun: Jilin University, 2016 (in Chinese). [13] 中华人民共和国住房和城乡建设部.普通混凝土长期性能和耐久性能试验方法标准:GB/T 50082—2009[S].北京:中国建筑工业出版社,2009. Ministry of Housing and Urban-Rural Development of the People’s Republic of China. Test method for long-term performance and durability of ordinary concrete: GB/T 50082—2009[S]. Beijing: China Building Industry Press, 2009 (in Chinese). [14] 张卫东,董 云,彭宁波,等.冻融循环下透水再生混凝土力学性能损伤分析[J].建筑材料学报,2020,23(2):292-296. ZHANG W D, DONG Y, PENG N B, et al. Analysis on mechanical properties of pervious recycled concrete by damage under freeze-thaw cycles[J]. Journal of Building Materials, 2020, 23(2): 292-296 (in Chinese). |