Browse > Article
http://dx.doi.org/10.11112/jksmi.2010.14.5.153

A Study on the Strength Property of Recycled Fine Aggregate (Wet Type) Mortar with Blast Furnace Slag  

Shim, Jong-Woo (한국건설기술연구원 건축구조.자원연구실)
Publication Information
Journal of the Korea institute for structural maintenance and inspection / v.14, no.5, 2010 , pp. 153-160 More about this Journal
Abstract
This study aims to obtain technical data for improvement of utilization of Blast Furnace Slag(BFS), recycled aggregate in the future by complementing fundamental problems of BFS such as manifestation of initial strength and excessive alkali quantity as well as weakness of recycled fine aggregate through manufacturing of recycled fine aggregate mortar using BFS. The recycled aggregate includes the cement paste hardened as the surface and the type of the aggregate, which contains plenty of calcium hydroxide($Ca(OH)_2$) as well as the unhydrated cement. Accordingly, the objectives of this study are to inspect the manufacturing the recycled fine aggregate mortar used with blast furnace slag, to consider the effects of the recycled aggregate on the strength development of ground granulated blast furnace slag, and then to acquire the technical data to take into consideration the further usages of the recycled aggregate and blast furnace slag. In eluted ions from recycled aggregate, it showed that there were natrium($Na^+$) and kalium($K^+$), expected to be flown out of unhydrated cement, as well as calcium hydroxide($Ca(OH)_2$). Application of this water to mix cement mortar with ground granulated blast furnace slag was observed to expedite hydration as calcium hydroxide($Ca(OH)_2$) and unhydrated cement component were expressed to give stimuli effects on ground granulated blast furnace slag. The results of the experiment show that the recycled aggregate mixed with blast furnace slag has comparatively higher hydration activity in 7 day than the mortar not mixed with one in 3 day mortar does, causing the calcium hydroxide in the recycled fine aggregate to work on as a stimulus to the hydration of ground granulated blast furnace slag.
Keywords
Recycled Aggregate Mortar; Blast Furnace Slag; Calcium hydroxide($Ca(OH)_2$); Stimulus;
Citations & Related Records
연도 인용수 순위
  • Reference
1 박응모, 무기계 자극제가 고로슬래그 시멘트 수화물의 특성에 미치는 영향, 전북대 박사학위논문, pp. 7-19, 2001.
2 (財)國土開發技術硏究センータ, 再生コンクリ-トの利用技術 の開發, pp. 89-94, 平成8年.
3 再生コンクリ-トの利用技術の開發, (財)國土開發 技術硏究セ ンター, 1997.
4 コンクリ-ト再生材高度利用硏究會活動報告書, コンクリ-ト リサイクルシステムの普及に向けての提言, 2005. 9.
5 後藤誠史, "高爐水碎スラグーアルカリ刺戟劑系セメント硬化体 の性質", セメント技術年報, Vol. 41, pp. 50-53, 1987.
6 송종택 외, NaOH 자극에 의한 고로수쇄슬래그의 수화반응, Journal of the Korea Ceramic Society, Vol. 17, No. 3, pp. 158-162, 1980.
7 송종택, 고황산염 슬래그 시멘트의 수화반응, 시멘트 심포지엄, pp. 55-66, 1981.
8 한국산업규격, KS F 2573(콘크리트용 순환골재), 기술표준원, 2006.
9 高爐スラグ微粉末を用いたコンクリ-トの施工指針, 土木學會, 1996.
10 한국산업규격, KS F 2563(콘크리트용 고로슬래그 미분말), 기술표준원, 2004.
11 笠井芳夫, 阿部道彦, 柳啓 : 再生コンクリートの諸物性に關す る實驗的硏究, セメント. コンクリート論文集 No. 50, pp. 802-807, 1996. 12.
12 日本建築學會(編) : 高爐スラグ微粉末の建築用コンクリト利用 に關する硏究, 高爐スラグ微粉末調査硏究小委員會, 1990.