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논문 기본 정보

자료유형
학술저널
저자정보
Abhilasha (AcSIR-Academy of Scientific and Innovative Research) Rajesh Kumar (AcSIR-Academy of Scientific and Innovative Research) Rajni Lakhani (AcSIR-Academy of Scientific and Innovative Research) Raghav Kumar Mishra (CSIR-Central Building Research Institute) Shahnavaz Khan (CSIR-Central Building Research Institute)
저널정보
한국콘크리트학회 International Journal of Concrete Structures and Materials International Journal of Concrete Structures and Materials Vol.17 No.3
발행연도
2023.5
수록면
407 - 428 (22page)

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초록· 키워드

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Autoclaved aerated concrete (AAC) is the lightest masonry material available in today’s building industry. It shows properties, such as high strength per unit weight, lesser density, lower shrinkage, higher thermal insulation, and fire resistance as compared to traditional concrete. Not only engineering properties of AAC make it popular in construction industry, but also its eco-friendly nature also contributes in conservation of energy. AAC produces about 67% lower carbon emission than the clay bricks. Consequently, it becomes a cost-effective product which reduces the cost of construction. This paper provides thorough insight into possible solutions for the waste utilization. It has been inferred that fine aggregates can be replaced by these wastes in the preparation of AAC. This replacement will improve its physio-mechanical properties, such as bulk-density, moisture absorption, compressive strength, along with microstructure. These properties are comprehensively presented to categorize the investigation which has been done in such fields earlier. The ongoing research work at the author’s institute, i.e., the development of lightweight concrete by using different kind of waste materials, such as marble slurry, fly ash, etc., is being presented.

목차

Abstract
1 Introduction
2 Constituents of AAC
3 Preparation Method of AAC
4 Physio-mechanical Properties
5 Microstructural Analysis
6 Functional Property: Thermal Conductivity
7 R&D at CSIR-CBRI
8 Recommendations
9 Conclusions
References

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