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求一篇文章的ISTP检索号。 作者:Jinxia Xu,Linhua Jiang, 题目:Influence of surface conditions, inhibitor on the chloride threshold level for corrosion of steel in a simulated concrete pore solution 谢谢先! |
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lby1258(金币+2):鼓励应助~~ 2010-11-23 12:37:08
lby1258(金币+2):鼓励应助~~ 2010-11-23 12:37:08
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INFLUENCE OF SURFACE CONDITIONS, INHIBITOR ON THE CHLORIDE THRESHOLD LEVEL FOR CORROSION OF STEEL IN A SIMULATED CONCRETE PORE SOLUTION 作者: Xu JX (Xu, Jinxia)1, Jiang LH (Jiang, Linhua)1 编者: Sun W; VanBreugel K; Miao C; Ye G; Chen H 来源出版物: MICROSTRUCTURE RELATED DURABILITY OF CEMENTITIOUS COMPOSITES, VOLS 1 AND 2 丛书: RILEM PROCEEDINGS 卷: 61 页: 609-617 出版年: 2008 会议信息: 1st International Conference on Microstructure Related Durability of Cementitious Composites Nanjing, PEOPLES R CHINA, OCT 13-15, 2008 SE Univ; TUDelft; JSRIBS; CAE; Chinese Ceram Soc; Rilem; ACI 摘要: The aim of this study is to evaluate the influence of steel surface conditions and all organic inhibitor on the chloride threshold level for corrosion of steel in a concrete contaminated by chlorides. The corrosion of steel with two different surface conditions, i.e. a mill scale and polishing treatment, has been simulated in a saturated Ca(OH)(2) solution containing different chloride concentration. N,N'-dimethylaminoethanol (DMEA) has been applied as an amino-alcohol based inhibitor. The results concluded by electrochemical impedance spectra (EIS) indicate that, contrasted to the steel with a mill scale, the polishing steel has an increasing chloride threshold value. However, the addition of the inhibitor exhibits little effect on the chloride threshold level for the steel corrosion in the saturated Ca(OH)(2) solution, although it is effective to reduce the corrosion rate of the steel. 文献类型: Proceedings Paper 语言: English KeyWords Plus: REINFORCING STEEL; ALKALINE 通讯作者地址: Xu, JX (通讯作者), Hohai Univ, Dept Mat Sci & Engn, Nanjing 210098, Peoples R China 地址: 1. Hohai Univ, Dept Mat Sci & Engn, Nanjing 210098, Peoples R China 出版商: R I L E M PUBLICATIONS, 157 RUE DES BLAINS, 92220 BAGNEUX, FRANCE 学科类别: Construction & Building Technology; Engineering, Civil IDS 号: BIQ82 ISBN: 978-2-35158-065-3 |
2楼2010-11-23 11:41:13
3楼2010-11-23 11:47:21
xujinxia(金币+3):谢谢! 2010-11-23 12:02:24
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FN ISI Export Format VR 1.0 PT S AU Xu, JX Jiang, LH AF Xu, Jinxia Jiang, Linhua ED Sun, W; VanBreugel, K; Miao, C; Ye, G; Chen, H TI INFLUENCE OF SURFACE CONDITIONS, INHIBITOR ON THE CHLORIDE THRESHOLD LEVEL FOR CORROSION OF STEEL IN A SIMULATED CONCRETE PORE SOLUTION SO MICROSTRUCTURE RELATED DURABILITY OF CEMENTITIOUS COMPOSITES, VOLS 1 AND 2 SE RILEM PROCEEDINGS LA English DT Proceedings Paper CT 1st International Conference on Microstructure Related Durability of Cementitious Composites CY OCT 13-15, 2008 CL Nanjing, PEOPLES R CHINA SP SE Univ, TUDelft, JSRIBS, CAE, Chinese Ceram Soc, Rilem, ACI ID REINFORCING STEEL; ALKALINE AB The aim of this study is to evaluate the influence of steel surface conditions and all organic inhibitor on the chloride threshold level for corrosion of steel in a concrete contaminated by chlorides. The corrosion of steel with two different surface conditions, i.e. a mill scale and polishing treatment, has been simulated in a saturated Ca(OH)(2) solution containing different chloride concentration. N,N'-dimethylaminoethanol (DMEA) has been applied as an amino-alcohol based inhibitor. The results concluded by electrochemical impedance spectra (EIS) indicate that, contrasted to the steel with a mill scale, the polishing steel has an increasing chloride threshold value. However, the addition of the inhibitor exhibits little effect on the chloride threshold level for the steel corrosion in the saturated Ca(OH)(2) solution, although it is effective to reduce the corrosion rate of the steel. C1 [Xu, Jinxia; Jiang, Linhua] Hohai Univ, Dept Mat Sci & Engn, Nanjing 210098, Peoples R China. RP Xu, JX, Hohai Univ, Dept Mat Sci & Engn, Nanjing 210098, Peoples R China. NR 13 TC 0 PU R I L E M PUBLICATIONS PI BAGNEUX PA 157 RUE DES BLAINS, 92220 BAGNEUX, FRANCE BN 978-2-35158-065-3 J9 RILEM PROC PY 2008 VL 61 BP 609 EP 617 PG 9 SC Construction & Building Technology; Engineering, Civil GA BIQ82 UT ISI:000262079600065 ER EF UT ISI:000262079600065 |
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