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Corrosion Resistance on Recycled Aggregate Concrete Incorporating Slag

Title
Corrosion Resistance on Recycled Aggregate Concrete Incorporating Slag
Author
안기용
Issue Date
2021-05
Publisher
AMER CONCRETE INST
Citation
ACI MATERIALS JOURNAL, v. 118, Issue. 3, Page. 143-144
Abstract
Ann discusses Al-Yaqout et al's paper about the corrosion resistance of steel in concrete containing recycled aggregate incorporated with slag. Their concrete mixture proportions seem misleading. The authors set the water-binder ratio (w/b) as 0.35 for all mixtures: the binder content was 410.0 kg/m3 and water was 143.5 kg/m3, irrespective of mixture type. Portland cement was solely admixed as binder in some mixtures, while portland cement (307.5 kg/m3) and slag (102.5 kg/m3) were combined in the other mixtures. Simultaneously, the content of natural sand was 705.0 kg/m3. With no information on these specific gravities, it could be easily expected that the specific gravity for portland cement usually ranges 3.10 to 3.15, while slag is 2.85 to 2.90. Depending on the mixtures, recycled aggregate was used as coarse aggregate, at 0, 50, and 100%. Fortunately, the specific gravity for natural aggregate and recycled aggregate was given in the paper: the value for natural aggregate was 2.69 and for recycled was 2.39. Then, the total weight of coarse aggregate was commonly 1100.0 kg/m3 in all mixtures. The authors substantially designed concrete mixtures with an equated weight for each material including binder, water, sand, and coarse aggregate, neglecting their different specific gravities. This mixture design, in fact, imposes potentially erroneous proportioning.
URI
https://www.proquest.com/docview/2537154454?accountid=11283https://repository.hanyang.ac.kr/handle/20.500.11754/166792
ISSN
0889-325X; 1944-737X
Appears in Collections:
COLLEGE OF ENGINEERING SCIENCES[E](공학대학) > CIVIL AND ENVIRONMENTAL ENGINEERING(건설환경공학과) > Articles
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