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用于机械增强、可持续性和智能特性的水泥基复合材料中的外加剂。

Admixtures in Cement-Matrix Composites for Mechanical Reinforcement, Sustainability, and Smart Features.

作者信息

Bastos Guillermo, Patiño-Barbeito Faustino, Patiño-Cambeiro Faustino, Armesto Julia

机构信息

Industrial Engineering School, University of Vigo, Rúa Conde de Torrecedeira 86, 36208 Vigo, Spain.

Centro de Ciências Exatas e Tecnológicas, Centro Universitário Univates, Rua Avelino Tallini 171, Lajeado RS 95900-000, Brazil.

出版信息

Materials (Basel). 2016 Nov 30;9(12):972. doi: 10.3390/ma9120972.

Abstract

For more than a century, several inclusions have been mixed with Portland cement-nowadays the most-consumed construction material worldwide-to improve both the strength and durability required for construction. The present paper describes the different families of inclusions that can be combined with cement matrix and reviews the achievements reported to date regarding mechanical performance, as well as two other innovative functionalities of growing importance: reducing the high carbon footprint of Portland cement, and obtaining new smart features. Nanomaterials stand out in the production of such advanced features, allowing the construction of smart or multi-functional structures by means of thermal- and strain-sensing, and photocatalytic properties. The first self-cleaning concretes (photocatalytic) have reached the markets. In this sense, it is expected that smart concretes will be commercialized to address specialized needs in construction and architecture. Conversely, other inclusions that enhance strength or reduce the environmental impact remain in the research stage, in spite of the promising results reported in these issues. Despite the fact that such functionalities are especially profitable in the case of massive cement consumption, the shift from the deeply established Portland cement to green cements still has to overcome economic, institutional, and technical barriers.

摘要

一个多世纪以来,几种添加剂一直与波特兰水泥混合使用——如今波特兰水泥是全球消耗量最大的建筑材料——以提高建筑所需的强度和耐久性。本文描述了可与水泥基体结合的不同种类的添加剂,并回顾了迄今为止在机械性能方面所取得的成果,以及另外两种日益重要的创新功能:减少波特兰水泥的高碳足迹,以及获得新的智能特性。纳米材料在生产此类先进特性方面表现突出,能够通过热传感、应变传感和光催化特性构建智能或多功能结构。首批自清洁混凝土(光催化)已投放市场。从这个意义上说,预计智能混凝土将实现商业化,以满足建筑和建筑学方面的特殊需求。相反,尽管在这些方面已报道了一些很有前景的结果,但其他增强强度或减少环境影响的添加剂仍处于研究阶段。尽管这些功能在大量消耗水泥的情况下特别有益,但从根深蒂固的波特兰水泥转向绿色水泥仍需克服经济、制度和技术方面的障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ff9/5456999/586324685fe4/materials-09-00972-g001.jpg

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