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磨细矿渣抗氯离子侵蚀性能的机理研究 被引量:26

THE MECHANISM OF GROUND GRANULATED BLAST-FURNACE SLAG TO RESIST CHLORIDE CORROSION
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摘要 用双电层理论和F盐的形成机理分析了磨细矿渣具有优越抗氯离子侵蚀性能的机理。磨细矿渣的C3A含量高 ,硫酸根含量低 ,水化产物碱性低 ,因而其氯离子结合能力更强。磨细矿渣高性能混凝土孔结构细化 。 The response of ground granulated blast?furnace slag to resist chloride corrosion is studied in the paper.It is analyzed by both the theory of double electric layer and the Fridel salt′s formation.It is found that the C 3A in GGBS is higher than in the cement.The chloride binding is stronger for the higher C 3A content. It is also found that both the sulfate radical content and the alkalinity of hydration products in GGBS are lower than in the cement.The pore structure of high performance GGBS concrete is more refined;the double electric layer is more effected to restrict the diffusion of chloride.
出处 《土木工程学报》 EI CSCD 北大核心 2002年第6期100-104,共5页 China Civil Engineering Journal
基金 国家九五攻关项目(96-415-04-03-01)
关键词 磨细矿渣 氯离子 硫酸根 双电层 F盐 ground granulated blast-furnace slag(GGBS) chlorion sulphate radical double electric layer Fridel salt
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