[1] Chen X,Wu S,Zhou J.Influence of porosity on compressive and tensile strength of cement mortar[J].Construction and Building Materials,2013,40:869-874.
[2] Li D,Li Z,Lyu C,et al.A predictive model of the effective tensile and compressive strengths of concrete considering po- rosity and pore size[J].Construction and Building Materials, 2018,170:520-526.
[3] Han X,Feng J,Wang B.Relationship between fractal feature and compressive strength of fly ash-cement composite ce - mentitious materials[J].Cement and Concrete Composites, 2023,139:105052.
[4] 高志涵, 陈波, 陈家林,等. 基于 X-CT 的泡沫混凝土孔隙结构与导热性能[J].建筑材料学报,2023,26(7):723-730.
[5] 董昊良,李化建,杨志强,等 . 混凝土冻融破坏机理及寿命预测方法[J].材料导报,2024,38(2):143-153.
[6] Wang B,Guo J,Liu J,et al.Prediction method of permeability of textile- reinforced concrete based on fractal dimension theory[J].Construction and Building Materials,2022,327: 126868.
[7] Lyu Q,Qiu Q,Zheng J,et al.Fractal dimension of concrete in- corporating silica fume and its correlations to pore struc - ture, strength and permeability[J].Construction and Build- ing Materials,2019,228:116986.
[8] 钱鹏 . 混凝土的微观裂纹结构与宏观渗透性能研究[D].北京:清华大学 .
[9] Wang R,Zhang Q,Li Y.Deterioration of concrete under the coupling effects of freeze-thaw cycles and other actions: A review[J].Construction and Building Materials,2022,319: 126045.
[10] 谢恩慧,周春圣 . 利用低场磁共振弛豫测孔技术预测水泥基材料的水分渗透率[J].硅酸盐学报,2020,48(11): 1808-1816.
[11] Zhou C,Ren F,Wang Z,et al.Why permeability to water is anomalously lower than that to many other fluids for ce-
ment-based material?[J].Cement and Concrete Research, 2017,100:373-384.
[12] 李文郁,尹健昊,王健,等 . 低场核磁共振技术在水泥基材料中的理论模型及应用[J].硅酸盐学报,2022,50(11): 2992-3008.
[13] 李文伟, 陈文耀,刘文彦,等 . 混凝土芯样抗冻性试验研究[C]. 中国土木工程学会 2006 混凝土工程耐久性研究和应用研讨会论文集,2006:183-187.
[14] 杨亚会 . 大气环境下基于碳化程度的混凝土结构耐久性研究[D].宜昌:三峡大学,2022.
[15] Wu Z.Discussion on recent development direction of con - crete science and technology[J].Journal of the Chinese Ceramic Society,1979,3:262-270.
[16] Mehta P K,Monteiro P J M.Concrete: microstructure, prop - erties, and materials[M].Prentice-Hall,2013.
[17] 杨帅,毛海涛,刘畅,等 . 中高强混凝土抗压强度与气孔分布特征关系模型研究[J].长江科学院院报,2024,41 (4):194-202.
[18] 沈奇真 . 碳化与荷载耦合作用下水泥基材料微结构演变与预测模型[D].南京:东南大学,2018.
[19] Von Greve- Dierfeld S,Lothenbach B,Vollpracht A,et al. Understanding the carbonation of concrete with supple - mentary cementitious materials: a critical review by RILEM TC 281-CCC[J].Materials and Structures,2020,53(6):136.
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