|
建立再碱化技术修复火害后钢筋混凝土之pH值控制模式
|
Abstract:
[1] | Neithalath, N., Sumanasooriya, M.S. and Deo, O. (2010) Characterizing pore volume, sizes, and connectivity in pervious concretes for permeability prediction. Materials Characterization, 61, 802-813. |
[2] | Samaha, H.R. and Hover, K.C. (1992) Influence of Microcracking on the Mass Transport Properties of Concrete. ACI Materials Journal, 89, 416-424. |
[3] | Chan, Y.N., Peng, G.F., Anson, M. and Chan, Y.N. (1999) Residual strength and pore structure of high-strength concrete and normal strength concrete after exposure to high temperatures. Cement and Concrete Com-posites, 21, 23-27. |
[4] | Chana, Y.N., Luob, X. and Sunb, W. (2000) Compressive strength and pore structure of high-performance concrete after exposure to high temperature up to 800 C. Cement and Concrete Research, 30, 247-251. |
[5] | Lion, M., Skoczylas, F., Lafhaj, Z. and Sersar, M. (2005) Experimental study on a mortar. Temperature effects on porosity and permeability. Residual properties or direct measurements under temperature. Cement and Concrete Research, 35, 1937-1942. |
[6] | Li, Q.T. and Li, Z.G. (2010) Repair of fire-damaged concrete improvement of carbonation resistance. Proceeding of the 2nd International Conference on Sust, 1557-1568. |
[7] | Bertolini, L. (2008) Conservation of historical reinforced concrete structures damaged by carbonation induced corrosion by means of elec-trochemical realkalisation. Journal of Cultural Heritage, 4, 376-385. |
[8] | Mietz, J. (1995) Electrochemical realkalisation for rehabilitation of reinforced concrete structure. Materials and Corrosion, 46, 527-533. |
[9] | Sarria, C.C. and Alonso, C. (1999) Evolution of pore solution chemistry, electro-osmosis and rebar corrosion rate induced by realkalisation. Materials and Structures, 32, 427-436. |
[10] | Yeih, W. and Chang, J.J. (2005) A study on the efficiency of elec-trochemical realkalisation of carbonated concrete. Construction and Building Materials, 19, 516-524. |
[11] | Monteiro, L., Branco, F.A., de Brito, J., Neves, R. and Monteiro, L. (2012) Statistical analysis of the carbonation coefficient in open air concrete structures. Construction and Buildings Materials, 29, 263-269. |
[12] | Polder, R.B. and Peelen, W.H.A. (2009) Concrete solution: In “numerical modeling of cathodic protection in concrete structures” Grantham. International Conference on Concrete Solutions, London, Taylor & Francis Group. |
[13] | 屈文俊, 陳璐, 劉於飛 (2001) 碳化混凝土結構的再鹼化維修技術. 建築結構, 9, 58-60. |
[14] | 柳俊哲 (2006) 混凝土碳化研究與進展(3)——腐蝕因子的遷移. 混凝土, 1, 51-54. |