
骨料碱活性及抑制措施研究
发布时间: 2006-04-01 00:00 查看: 3873次
吴定燕 方坤河 曾力 刘永和 阮燕
摘 要:用“中国压蒸快速法”和“南非法”对混凝土骨料进行了碱活性检验,检验结果证明,针对骨料具有碱活性,且主要活性成分为活性二氧化硅,进行了掺用粉煤灰的方法进行抑制的研究,研究结果表明,尽管用重庆华能的粉煤灰,任一掺量均有抑制效果,但掺量大于或等于30%时,才是安全有效的掺量。
关键词:碱骨料反应;碱活性;混凝土;粉煤灰;抑制
The Research of Alkali Reactivity Potential
and the Preventive Measure
WU Ding-yan,FANG Kun-he,ZENG Li,LIU Yong-he,RUAN Yan
(Wuhan University of Hydraulic and Electric Engineering,Wuhan 430072,China)
Abstract:Alkali reactivity potential test have been carried out with Chinese rapid method for identification of alkali reactivity of aggregate and ASTM C1260-94. As a result,the aggregate is alkali reactivity one and the main reactive ingredient is reactive SiO2.The measure adding fly ash to mortar bar to prevent the AAR has been studied.The result is that every contend of fly ash made in Chongqing Huaneng used to replace cement is an effective measure to reduce the expansion in mortar bar due to ARR,and the 30%(or more) fly ash is sufficient to prevent damaging expansion.
Key words:alkali-aggregate reaction,alkali reactivity potential,concrete,fly ash,prevention▲
摘 要:用“中国压蒸快速法”和“南非法”对混凝土骨料进行了碱活性检验,检验结果证明,针对骨料具有碱活性,且主要活性成分为活性二氧化硅,进行了掺用粉煤灰的方法进行抑制的研究,研究结果表明,尽管用重庆华能的粉煤灰,任一掺量均有抑制效果,但掺量大于或等于30%时,才是安全有效的掺量。
关键词:碱骨料反应;碱活性;混凝土;粉煤灰;抑制
The Research of Alkali Reactivity Potential
and the Preventive Measure
WU Ding-yan,FANG Kun-he,ZENG Li,LIU Yong-he,RUAN Yan
(Wuhan University of Hydraulic and Electric Engineering,Wuhan 430072,China)
Abstract:Alkali reactivity potential test have been carried out with Chinese rapid method for identification of alkali reactivity of aggregate and ASTM C1260-94. As a result,the aggregate is alkali reactivity one and the main reactive ingredient is reactive SiO2.The measure adding fly ash to mortar bar to prevent the AAR has been studied.The result is that every contend of fly ash made in Chongqing Huaneng used to replace cement is an effective measure to reduce the expansion in mortar bar due to ARR,and the 30%(or more) fly ash is sufficient to prevent damaging expansion.
Key words:alkali-aggregate reaction,alkali reactivity potential,concrete,fly ash,prevention▲
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