Abstract
본 연구는 석탄 잔사회의 재활용률을 높이기 위하여 잔사회 인공경량골재의 발포기구를 규명하는 것이다. 본 실험의 원료는 잔사회와 준설토이다. 인공경량골재는 10 mm 크기의 구형 성형체를 제조하고, 이를 승온소성법으로 <TEX>$1200^{\circ}C$</TEX>에서 <TEX>$1275^{\circ}C$</TEX>까지 소결하였다. 인공경량골재의 온도별, 조성별 비중 및 흡수율 등의 물성을 측정하고, 단면과 표면을 관찰하였다. 비중 곡선의 결과 잔사회 함량이 80 wt.%일 때 변곡점을 나타내었다. 잔사회 인공경량골재의 미세구조를 관찰한 결과 잔사회 함량이 80 wt.%를 넘으면 블랙코어가 없고, 자기화 발포로 균일한 미세기공이 다량으로 존재하며, 잔사회 함량이 80 wt.% 이하이면 잔사회 인공경량골재는 블랙코어가 존재하면서 매우 큰 기공이 불균일하게 존재한다. The purpose of this study is to improve recycling rate of the coal reject ash by investigating bloating mechanism for artificial lightweight aggregate of reject ash. In this study, we use reject ash (R/A) and dredged soil (D/S) as raw materials. The artificial lightweight aggregates were formed by plastic forming (<TEX>${\phi}$</TEX> = 10 mm) and sintered by temperature raising method at different temperatures (between 1200 and <TEX>$1275^{\circ}C$</TEX>). The physical properties of the aggregates such as bulk specific gravity, adsorption and microstructure of surface and cross-section are investigated with the sintering temperature and rate of R/A-D/S contents. As the result of the bulk specific gravity graphs, we can found out the inflection point at content of R/A 80 wt.%. From the microstructure images, we considered the artificial lightweight aggregates content of R/A over 80 wt.% are distributed numerous uniform micro-pores by vitrification without Black Core and the artificial lightweight aggregates of R/A below 80wt.% are distributed macro-pores with Black Core.
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