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掺合料的骨料碱活性抑制效能试验研究 被引量:2
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作者 翟祥军 邓拥军 张虹 《云南水力发电》 2018年第2期56-59,共4页
根据某大型水电工程在设计施工阶段所做的大量试验研究,全面阐述了目前混凝土中常用的几种掺合料的抑制碱骨料反应的效能情况、掺量变化等,为该工程建设用掺合料的优选提供科学依据。试验研究发现,Ⅰ、Ⅱ级粉煤灰及TF料3种掺合料碱骨料... 根据某大型水电工程在设计施工阶段所做的大量试验研究,全面阐述了目前混凝土中常用的几种掺合料的抑制碱骨料反应的效能情况、掺量变化等,为该工程建设用掺合料的优选提供科学依据。试验研究发现,Ⅰ、Ⅱ级粉煤灰及TF料3种掺合料碱骨料反应抑制效能均较好,膨胀率降低效果显著,评定为抑制混凝土碱—骨料反应有效,三者之间无显著优劣顺序。对于TL料、PL料,在不同掺量下试件的膨胀率较不掺掺合料基本有所降低,但抑制效果总体均较差。总体来讲,粉煤灰目前仍然是最有效的抑制碱—骨料反应的掺合料。 展开更多
关键词 掺合料 骨料碱活性反应 掺量 抑制 效能
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引绰济辽工程输水工程管线段PCCP管芯混凝土碱—骨料反应抑制措施分析
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作者 周海峰 《内蒙古水利》 2023年第2期69-71,共3页
文章分析了采取多种措施降低混凝土中的碱含量,尤其是在混凝土中掺加一定数量的粉煤灰,能有效抑制碱-硅酸类型的骨料碱活性反应,从而保证混凝土结构安全和使用寿命。
关键词 混凝土 骨料碱活性反应 粉煤灰 抑制
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Reaction between Alkaline Metal Ions and ASR Reactive Aggregate and Behavior of Na* and K* in Cement Paste Replaced by Li*
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作者 Wei Chien Wang Chih Chien Liu Chau Lee 《Journal of Civil Engineering and Architecture》 2013年第9期1056-1062,共7页
This paper studies the reaction between alkaline metal ions Li+, Na+ and K+ and ASR (alkali-silica reaction) reactive aggregates to determine whether Li+ can substitute Na+ and K+ that are unified in cement pa... This paper studies the reaction between alkaline metal ions Li+, Na+ and K+ and ASR (alkali-silica reaction) reactive aggregates to determine whether Li+ can substitute Na+ and K+ that are unified in cement paste. Reactive aggregates use meta-sandstone from eastern Taiwan and Pyrex glass. Non-reactive aggregates use siliceous sand. The results show that the dissolved amount of SiO2 is lower when the reactive aggregates are immersed in an 80 ℃1 N LiOH'H20 solution than in NaOH and KOH solutions. The reduced amounts of OH and Li+ in the solution are also higher than those in the NaOH and KOH solutions. These results reveal that reactive SiO2 can react with LiOH to form a reactant with low water solubility. When the powder of the cement paste is immersed in an 80 ℃ 1 N LiOH-H2O solution, the amounts of free Na+ and K+ in the solution are higher than those in water. The increased amount increases with the duration of immersion. The amount of Li+ in the solution also decreases with the duration of immersion. These results reveal that Li+ can substitute Na+ and K+ that are unified in cement paste, which indicates that ASR can be prevented with the existence of Li+. 展开更多
关键词 Alkali-silica reaction LITHIUM reactive aggregate paste.
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