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Applying Theories of Particle Packing and Rheology to Concrete for Sustainable Development

机译:颗粒填充和流变理论在混凝土中的可持续发展应用

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摘要

Concrete is one of the most important construction materials.However, it is not so compatible with the demands of sustainable development because manufacturing of cement generates a large amount of carbon dioxide and therefore cement consumption produces a huge carbon footprint. Currently, the cement consumption is generally lowered by adding supplementary cementitious materials to replace part of the cement. Nonetheless, in order to maintain performance, there is a limit to such cement replacement by supplementary cementitious materials. To further reduce the cement consumption,the total cementitious materials content has to be reduced. This requires the packing density of the aggregate particles to be maximized so that the amount of voids in the bulk volume of aggregate to be filled with cement paste could be minimized and the surface area of the aggregate particles to be minimized so that the amount of cement paste needed to form paste films coating the surfaces of aggregate particle for rheological performance could be minimized. Such optimizationis not straightforward and modern concrete science based on particuology is needed. Herein, a number of new theories regarding particle packing and rheology of concrete, which are transforming conventional concrete technology into modern concrete science, are presented. These theories would help to develop a more scientific and systematic concrete mix design method for the production of high-performance concrete with minimum cement consumption.
机译:混凝土是最重要的建筑材料之一,但是它与可持续发展的要求不那么兼容,因为水泥的生产会产生大量的二氧化碳,因此水泥的消耗会产生巨大的碳足迹。当前,通常通过添加补充胶凝材料来代替部分水泥来降低水泥消耗。但是,为了保持性能,用补充胶凝材料替代这种水泥是有局限的。为了进一步减少水泥消耗,必须降低水泥材料的总含量。这要求使骨料颗粒的堆积密度最大化,以便可以最小化将要用水泥浆填充的骨料体积中的空隙量,并且要使骨料颗粒的表面积最小化,从而使水泥的量减少。可以最小化形成糊料膜所需的糊料,该糊料膜覆盖聚集体颗粒的表面以提高流变性能。这种优化不是直接的,需要基于粒子学的现代具体科学。在此,提出了许多有关颗粒填充和混凝土流变的新理论,这些理论将传统的混凝土技术转变为现代混凝土科学。这些理论将有助于开发一种更科学,系统的混凝土配合比设计方法,以生产水泥消耗最少的高性能混凝土。

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