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暴露24年后码头钢筋混凝土梁的碳化和氯离子分布 被引量:3

Carbonization and chloride Distribution of Reinforced Concrete Beam After 24 Years' Exposure
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摘要 为了研究海洋环境下,混凝土抗氧离子涉透作用,对日照港煤码头钢筋混凝土梁不同部位钻取了一批直径100mm的混凝土芯样。在实验室测量了芯样的碳化深度和氯离子分布,分析了材料因素和环境因素对碳化和氯离子分布的影响。试验结果表明,在极度潮湿环境下混凝土碳化进展缓慢,且碳化区域以未完全碳化区为主导。所取芯样测试范围内的氯离子含量绝大多数均超过了氯离子限值,且其含量较高。局部气候环境对氯离子的分布有很大影响,尤其体现在对流区的深度变化上。 The specimens of concrete core with a diameter of 100mm were drilled from different locations of the Coals Wharf beams in Rizhao Port.The content of calcium carbonate in carbonization zone and chlorids distribution from the specimens were measured.The influence of materials and environment on carbonization and chloride distribution was analyzed.The test results show that carbonization rate is low in extremely humid environment,and the incomplete carbonization zone is dominant in carbonization zone,the depth of carbonization tends to a limit.The distribution of chloride ions is influenced evidently by local environment conditions,which can make the depth of convection zone charging especially.
出处 《港口科技》 2010年第10期16-22,共7页 Port Science & Technology
关键词 港口 码头 钢筋混凝土梁 碳化 氯离子 port wharf reinforced concrete beam carbonization chloride
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参考文献7

  • 1H. Y. Moon, K. corrosion embedded J Shin. Evaluation in anti - washout on steel bar underwater concrete containing mineral admixtures [ J ]. Cement and Concrete Research, 2006 (36) :521 - 529.
  • 2SiemesT, Polder R, VriesH. Design of Concrete Structures for Durability. Heron, 1998, 43(4):227 - 224.
  • 3才世平,于文勇,吴晨龙.混凝土耐久性问题及其提高措施探讨[J].黑龙江交通科技,2003,26(3):91-92. 被引量:12
  • 4Maage M, Helland S, Poulson E, et al. Service Life Prediction of Existing Concrete Structures Exposed to Marine Environment. American Concrete Institute Materials Jorunal, 1996,93 (6) : 602 - 608.
  • 5陈肇元.混凝土结构耐久性设计与施工指南[M].北京:中国建筑工业出版社,2004
  • 6Berke N, Hicks M. Predicting Chloride Profiles/Concrete, Proceedings, Corrosion 93. National Association of Corrosion Engineers Annual Conference, Houston : 1993.
  • 7张鹏,赵铁军,杨进波,Wittmann Folker H.冻融前后混凝土碳化性能试验研究[J].混凝土,2007(5):6-8. 被引量:14

二级参考文献12

  • 1牛荻涛,陈亦奇,于澍.混凝土结构的碳化模式与碳化寿命分析[J].西安建筑科技大学学报(自然科学版),1995,27(4):365-369. 被引量:90
  • 2DBJ 14-S6-2005,混凝土结构耐久性设计规程[S].2005.
  • 3Padadakis V G,Vayenas C G.Physical and chemical characteristics affecting the durability of concrete[J].ACI Materials Journal,1991,88 (3/4):186-196.
  • 4Padadakis V G,Vayenas C G.Experimental investigation and mathematical modeling of the concrete carbonation problem[J].Chemical Engineering Science,1991,46(5/6):1333-1338.
  • 5Padadakis V G,Vayenas C G.Fundamental modeling and experimental investigation of concrete carbonation[J].ACI Materials Journal,1991,88(7/8):363-373.
  • 6Powers T C.A working hypothesis for further studies of frost resistance of concrete[J].Journal of ACI,1945,16(4):245-272.
  • 7Powers T C,Helmuth R A.Theory of volume change in hardened Portland cement paste during freezing[A].Proceedings of Highway Research Board Annual Meeting[C].Washington D.C:National Academy of Science,1953,285-297.
  • 8Anna V,Bernhard A Schrefler,Renato V Vitaliani.2-D model for carbonation and moisture-heat flow in porous materials[J].Cement and Concrete Research,1995,25 (8):1703-1712.
  • 9Houst Y F.The role of moisture in the carbonation of cementitious materials[J].International Journal for Restoration of Buildings and Monuments,1996,2(1):49-66.
  • 10Anstice D J,Page C L,Page M M.The pore solution phase of carbonated cement pastes[J].Cement and Concrete Research,2004,35(2):377-383.

共引文献40

同被引文献35

  • 1牛荻涛.海洋环境下混凝土强度的经时变化模型[J].西安建筑科技大学学报(自然科学版),1995,27(1):49-52. 被引量:41
  • 2范宏,赵铁军,田砾,徐红波.暴露26年后的混凝土的碳化和氯离子分布[J].工业建筑,2006,36(8):50-53. 被引量:20
  • 3范宏,赵铁军,F H Wittmann.基于氯离子分布的氯离子渗透参数计算的新方法[J].港工技术,2006,43(3):19-22. 被引量:2
  • 4马昆林,谢友均,唐湘辉,石明霞.粉煤灰对混凝土中氯离子的作用机理研究[J].粉煤灰综合利用,2007,21(1):13-15. 被引量:9
  • 5李春秋,李克非,陈肇元.干湿交替下混凝土内水分影响深度的数值分析[C]∥第六届全国土木工程研究生学术论坛论文集.北京:清华大学,2008.
  • 6Gang Lin,Yinghua Liu,Zhihai Xiang.Numerical modeling for predicting service life of reinforced concrete stuchures exposed to chloride environments[J].Cement &Concrete Composites,2010(32):571-579.
  • 7K. Hong, R. D. Hooton. Effects cyclic chloride exposure onponetnition of concrete cover [ J ]. Cement and Concrete Research, 1999 (29) : 1379 - 1386.
  • 8T. Vidal, A. Caste.l, R. Francois. Corrosion process and structural perforrmnce of a 17 year old reinforced concrete beam stored in chloride environment[J]. Cement mad Concrete Research, 2007 (37): 1551 - 1561.
  • 9Mangat P S, Molloy B T.Prediction of long term chloride con- centrationin concrete[J].Materials and Structures, 1994, 27: 338-346.
  • 10Thomas, M D A.Life-365 Computer program for prediction the service life and life-cycke costs of reinforced concrete ex- posed to chorides[J].2000.

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