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荷载作用下混凝土氯离子渗透性研究进展

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Abstract:

氯离子侵蚀是影响钢筋混凝土耐久性的重要因素,而荷载水平对混凝土结构的裂缝扩展及孔结构有着显著的影响,进而影响混凝土结构的氯离子渗透性。本文综述了近年来在压缩、弯曲和拉伸荷载对混凝土氯离子渗透性的影响方面的研究进展,对存在的相关问题进行了讨论,并对需进一步研究的问题提出了相应的建议。

References

[1]  ? MEHTA P K, MONTEIRO P J M. Concrete Microstructure, Properties, and Materials [M]. 3rd ed. New York: The McGraw-Hill Companies, Inc, 2006.
[2]  ? ZHANG R, CASTEL A, FRAN?OIS R. Concrete cracking due to chloride-induced reinforcement corrosion–influence of steel–concrete interface defects due to the ‘top-bar effect’ [J]. Eur J Environ Civ Eng, 2012, 16(3–4): 402–413.
[3]  ? CASTEL A, FRAN?OIS R, VIDAL T. Influence of steel–concrete interface quality on reinforcement corrosion induced by chlorides [J]. Mag Concr Res, 2003, 55(2): 151–159.
[4]  ? ASTM C1202–05. Standard Test Method for electrical indication of concrete’s ability to resist chloride ion penetration [S].
[5]  ? LU Xinying. Application of the Nernst- Einstein equation to concrete [J]. Cem Concr Res, 1997, 27(2): 293–302.
[6]  ? NT BUILD 492–1999. Concrete, mortar and cement-based repair materials: chloride migration coefficient from non-steady-state migration experiments [S].
[7]  ? 张武满, 巴恒静, 高小建, 等. 重复载荷作用下矿渣混凝土的渗透性[J]. 深圳大学学报: 理工版, 2007, 24(4): 352–356.
[8]  XING Feng, LENG Fagang, FENG Naiqian, et al. Concrete (in Chinese), 2004(5): 3–8.
[9]  ? 卞雷, 方永浩, 杨犇. 应力环境下混凝土氯离子侵蚀规律的试验研究[J]. 水运工程, 2009(10): 20–24.
[10]  BIAN Lei, FANG Yonghao, YANG Ben. Port Water Eng (in Chinese), 2009(10): 20–24.
[11]  ? ZHANG Yunsheng, SUN Wei, LIU Zhiyong, et al. One and two dimensional chloride ion diffusion of fly ash concrete under flexural stress [J]. J Zhejiang Univ: Sci A(Appl Phys Eng), 2011, 12(9): 692– 701.
[12]  ? CASTEL A, FRANCY O, FRAN?OIS R, et al. Chloride diffusion in reinforced concrete beam under sustained loading [C]// CANMET/ACI fifth international conference on recent advances in concrete technology, Singapore, 2001, ACI SP 200: 647–662.
[13]  ? VIDAL T, CASTEL A, FRAN?OIS R. Corrosion process and structural performance of a 17 year old reinforced concrete beam stored in chloride environment [J]. Cem Concr Res, 2007, 37(11): 1551–1561.
[14]  ? 袁承斌, 张德峰, 刘荣桂, 等. 不同应力状态下混凝土抗氯离子侵蚀的研究[J]. 河海大学学报: 自然科学版, 2003, 31(1): 50–54.
[15]  YUAN Chengbin, ZHANG Defeng, LIU Guirong, et al. J Hohai Univ: Nat Sci Ed (in Chinese), 2003, 31(1): 50–54.
[16]  ? 王军. 荷载作用下钢筋混凝土结构耐久性分析方法研究[D]. 天津: 天津大学, 2008.
[17]  WANG Jun. Research on durability of reinforced concrete structures under load [D]. Tianjing: Tianjing University, 2008.
[18]  ? 张云升, 马立国, 宋鲁光, 等. 拉应力作用下混凝土渗透系数测试装置及测试方法[P]. 中国CN 200910024476.8, 2009–07–15.
[19]  ZHANG Yunsheng, MA Liguo, SONG Luguang, et al. Equipment and method for testing the permeability coefficient of concrete under tensile stress. CN 200910024476.8, 2009–07–15.
[20]  ? BOULFIZA M, SAKAI K, BANTHIA N, et al. An integrated analysis of reinforced concrete beam subjected to both loading and chloride ion ingress [J]. Proceed Jpn Concr Inst, 1999, 21(3): 79–84.
[21]  ? WANG L C, SODA M, UEDA T. Simulation of chloride diffusivity for cracked concrete based on RBSM and truss network model [J]. J Adv Concr Technol, 2008, 6(1): 143–155.
[22]  ? XIANG Tianyu, ZHAO Renda. Reliability evaluation of chloride diffusion in fatigue damaged concrete [J]. Eng Struct, 2007, 29(7): 1539–1547.
[23]  ? GB/T 50082—2009. 普通混凝土长期性能和耐久性能试验方法标准[S].
[24]  GB/T 50082—2009. Standard for test methods of long-term performance and durability of ordinary concrete [S].
[25]  ? JGJ/T 193—2009. 混凝土耐久性检验评定标准[S].
[26]  JGJ/T 193—2009. Standard for inspection and assessment of concrete durability [S]. ?
[27]  ? NT BUILD 335–1990. Concrete, mortar and cement based repair materials: chloride diffusion coefficient from migration cell experiments [S].
[28]  ? HOSEINI M, BINDIGANAVILE V, BANTHIA N. The effect of mechanical stress on permeability of concrete: A review [J]. Cem Concr Compos, 2009, 31(4): 213–220.
[29]  ? SAMAHA H R, HOVER K C. Influence of microcracking on the mass transport properties of concrete [J]. ACI Mater J, 1992, 89(4): 416– 424.
[30]  ? LIM C C, GOWRIPALAN N, SIRIVIVATNANON V. Microcracking and chloride permeability of concrete under uniaxial compression [J]. Cem Concr Compos, 2000, 22(5): 353–360.
[31]  ? SAITO M, ISHIMORI H. Chloride permeability of concrete under static and repeated compressive loading [J]. Cem Concr Res, 1995, 25(4): 803–808.
[32]  ? 田砾, 张洪源, 赵铁军, 等. 应变硬化水泥基复合材料轴压荷载下的渗透性[J]. 建筑结构学报, 2009(S2): 328–332.
[33]  TIAN Shuo, ZHANG Hongyuan, ZHAO Tiejun, et al. J Build Struct (in Chinese), 2009(S2): 328–332.
[34]  ? ZHANG W, BA H, CHEN S. Effect of fly ash and repeated loading on diffusion coefficient in chloride migration test [J]. Constr Build Mater, 2011, 25(5): 2269–2274.
[35]  ? 张武满, 巴恒静, 高小建, 等. 粉煤灰与应力水平对混凝土渗透性的影响[J]. 江苏大学学报: 自然科学版, 2008, 29(4): 356–359.
[36]  ZHANG Wuman, BA Hengjing, GAO Xiaojian, et al. J Jiangsu Univ: Nat Sci Ed, 2008, 29(4): 356–359.
[37]  ZHANG Wuman, BA Hengjing, GAO Xiaojian. J Shenzhen Univ: Sci Eng Ed, 2007, 24(4): 352–356.
[38]  ? NAKHI A E, XI Y, WILLAM K, et al. The effect of fatigue loading on chloride penetration in non-saturated concrete [C]// European Congress on Computational Methods in Applied Sciences and Engineering, Barcelona, 2000: 1–8.
[39]  ? 孙继成, 姚燕, 王玲, 等. 应力作用下混凝土的氯离子渗透性[J]. 低温建筑技术, 2011(3): 1–3.
[40]  SUN Jicheng, YAO Yan, WANG Ling, et al. Low Temp Constr Technol (in Chinese), 2011(3): 1–3.
[41]  ? 彭智. 干湿循环与荷载耦合作用下氯离子侵蚀混凝土模型研究[D]. 杭州: 浙江大学, 2010.
[42]  PENG Zhi. Model of chloride penetration of concrete under the drying and wetting cycles coupled with loading [D]. Hangzhou: Zhejiang University, 2010.
[43]  ? GONTAR W A, MARTIN J P, POPOVICS J S. Effects of cyclic loading on chloride permeability of plain concrete [C]// ANSARI F ed. Condition Monitoring of Materials and Structures. Austin, Texas: American Society of Civil Engineering, 2000, 95–109.
[44]  ? 孙伟, 蒋金洋, 王晶, 等. 弯曲疲劳载荷作用下HPC和HPFRCC抗氯离子扩散性能研究[J]. 中国材料进展, 2009, 28(11): 20–25.
[45]  SUN W, JIANG J Y, WANG J, et al. Mater China (in Chinese), 2009, 28(11): 20–25.
[46]  ? GOWRIPALAN N, SIRIVIVATNANON V, LIM C C. Chloride diffusivity of concrete cracked in flexure [J]. Cem Concr Res, 2000, 30(5): 725–730.
[47]  ? 赵尚传, 贡金鑫, 水金锋. 弯曲荷载作用下水位变动区域混凝土中氯离子扩散规律试验[J]. 中国公路学报, 2007, 20(4): 76–82.
[48]  ZHAO Shangchuan, GONG Jinxin, SHUI Jinfeng. China J Highw Transp (in Chinese), 2007, 20(4): 76–82.
[49]  ? 邢锋, 冷发光, 冯乃谦, 等. 长期持续荷载对素混凝土氯离子渗透性的影响[J]. 混凝土, 2004(5): 3–8.
[50]  ? 何世钦, 贡金鑫. 弯曲荷载作用对混凝土中氯离子扩散的影响[J]. 建筑材料学报, 2005, 8(2): 134–138.
[51]  HE Shiqin, GONG Jinxin. J Build Mater (in Chinese), 2005, 8(2): 134–138.
[52]  ? 涂永明, 吕志涛. 应力状态下混凝土结构的盐雾侵蚀试验研究[J]. 工业建筑, 2004, 34(5): 1–3.
[53]  TU Yongming, LU Zhitao. Ind Constr (in Chinese), 2004, 34(5): 1–3.
[54]  ? 王彩辉, 孙伟, 蒋金洋, 等. 动载–环境耦合作用下氯离子在混凝土中的扩散性能研究[J]. 工业建筑, 2010, 40(11): 1–5.
[55]  WANG Caihui, SUN Wei, JIANG Jinyang, et al. Ind Constr (in Chinese), 2010, 40(11): 1–5.
[56]  ? WANG Caihui, SUN Wei, JING Jinyang, et al. The transport properties of concrete under the simultaneous coupling of fatigue loading and environmental factors [J]. J Wuhan Univ Technol Mater: Sci Ed, 2012, 27(1): 181–186.
[57]  ? JAFFER S J, HANSSON C M. Chloride-induced corrosion products of steel in cracked-concrete subjected to different loading conditions [J]. Cem Concr Res, 2009, 39(2): 116–125.
[58]  ? 邓宏卫, 曾京生, 郑俊, 等. 受拉荷载作用下混凝土氯离子渗透性试验方法研究[J]. 低温建筑技术, 2010(10): 3–5.
[59]  DENG Hongwei, ZENG Jingsheng, ZHENG Jun, et al. Low Temp Constr Technol (in Chinese), 2010(10): 3–5.
[60]  ? KONIN A, FRANCOIS R, ARLIGUIE G. Penetration of chlorides in relation to the microcracking state into reinforced ordinary and high strength concrete [J]. Mater Struct, 1998, 31(5): 310–316.

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