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CiteSpace-based visualization analysis on mappings of alkali-activated cementitious materials in the field of engineering research

机译:基于CITESACE的基于CENTALIAD胶粘材料映射的可视化分析

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Alkali-activated cementitious materials (AACM) became the most promising alternative materials of Portland cement due to their merits including early strength, high environmental adaptability and low environmental impact. The scientific knowledge mapping was drawn with CiteSpace Visual Analysis Software and the method combining qualitative and quantitative analysis, the co-citation network based on the core collection of Web of Science is generated, and frontiers and hotspots of studies in AACM are explored to provide theoretical guidance for subsequent researches. The research results showed that the publications with respect to the field of AACM rocketed recently and had become an increasingly interdisciplinary research subject. Relevant researches were most conducted in China, Australia and USA, however, European countries have a high degree of research content centrality and are closely related to other countries. The most studied materials were the fly ash, slag and metakaolin based on the Visual Analysis, and researchers focused on the modification of AACM and studies in new solid wastes in recently, and the studies targeting at practical engineering applications. National or international agencies are to intensify cooperation and improve practical engineering applications of different AACM to improve scientific research significance. The follow-up researches are prospected in this paper. The relations between the research interest, subject, hotspot, author, journal and contributing institutions are highlighted, promoting comprehensive understandings on the field of AACM.
机译:由于它们的优点,包括早期强度,高环境适应性和低环境影响,碱活性胶凝材料(AACM)成为波特兰水泥最有前途的替代材料。科学知识映射被CiteSpace视觉分析软件和定性和定量分析的方法,基于科学网核心集合的共同引文网络产生,探讨了AACM研究的前沿和热点,以提供理论后续研究的指导。研究结果表明,最近飙升的AACM领域的出版物已成为越来越多的跨学科研究主题。中国,澳大利亚和美国最具相关研究,然而,欧洲国家具有高度研究内容中心,与其他国家密切相关。最具研究的材料是基于视觉分析的粉煤灰,炉渣和偏塔林,研究人员专注于最近对新型固体废物的修饰和研究,以及在实际工程应用中的研究。国家或国际机构要加强合作,改善不同AACM的实用工程应用,以提高科学研究意义。在本文中进行了后续研究。突出了研究兴趣,主题,热点,作者,杂志和贡献机构之间的关系,促进了AACM领域的全面谅解。

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