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期刊介绍
This journal is designed to reflect current developments and advances being made in the general field of cement-concrete composites technology and in the production, use, and performance of cement-based construction materials. The word cement is interpreted in a wide sense, including not only Portland cement but also blended cements and other binding materials. In addition to novel aspects of conventional concrete materials, the journal covers a wide range of composite materials such as fiber-reinforced cement composites, polymer cement composites, polymer impregnated composites, ferrocement, and cement composites containing special aggregate inclusions or waste materials. Original papers dealing with microstructure (as it relates to engineering properties), material properties, testing and test methods, fracture mechanics, durability aspects, composite mechanics/technology, modelling, design, fabrication and practical applications of these materials form the major themes of the journal. Provided there is sufficient linkage to properties defined at the material scale, papers concerning the behavior of structural components and systems, in situ performance, and field studies will also be accepted for review, as well as those concerning the repair and maintenance, serviceability behavior, and sustainability of structures made with these materials.
The roles of biochar as green admixture for sediment-based construction products
来源期刊:Cement & Concrete Composites
DOI:10.1016/J.CEMCONCOMP.2019.103348
Performance-based design of all-grade strain hardening cementitious composites with compressive strengths from 40 MPa to 120 MPa
来源期刊:Cement & Concrete Composites
DOI:10.1016/J.CEMCONCOMP.2019.01.001
Assessment of self-healing and durability parameters of concretes incorporating crystalline admixtures and Portland Limestone Cement
来源期刊:Cement & Concrete Composites
DOI:10.1016/J.CEMCONCOMP.2019.02.017
Synergistic effects of hybrid polypropylene and steel fibers on explosive spalling prevention of ultra-high performance concrete at elevated temperature
来源期刊:Cement & Concrete Composites
DOI:10.1016/J.CEMCONCOMP.2018.11.009
Mechanical and microstructural properties of cement pastes containing carbon nanotubes and carbon nanotube-silica core-shell structures, exposed to elevated temperature