Properties of Eco-friendly Artificial Stone according to the mixing ratio of Geopolymer-based recycled Aggregate

지오폴리머 기반 순환골재 혼입율에 따른 친환경성 인조석재의 특성

  • 경석현 (한밭대학교 건설환경조형대학 건축공학과) ;
  • 최병철 (한밭대학교 건설환경조형대학 건축공학과) ;
  • 강연우 (아트리움 컨설턴트(주)) ;
  • 이상수 (한밭대학교 건설환경조형대학 건축공학과)
  • Published : 2020.06.12

Abstract

Recently, as interest in environmental issues increases, minimizing carbon dioxide generated during cement manufacturing is a problem to be solved. In order to solve such a problem, it is required to use an industrial by-product of recycled aggregate, blast furnace slag, and circulating fluidized bed boiler fly ash to replace it on the basis of geopolymer(=cementless). This study examines the characteristics of eco-friendly artificial stone according to the mixing ratio of geopolymer-based recycled aggregate. As a result of the experiment, when the addition rate of the alkali stimulant was 15% and the mixing ratio of the circulating aggregate was 70%, the flexural strength and compressive strength were the highest. Density and water absorption decreased as density of circulating aggregates increased and water absorption increased. However, when the mixing ratio of the circulating aggregate exceeded 70%, the flexural strength and compressive strength decreased. Therefore, in order to obtain strengths meeting the KS standards, the mixing ratio of recycled aggregate was set to 70%, and artificial stone was manufactured using industrial by-products.

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