Time-dependent buildability evaluation of 3D printed concrete: experimental validation and numerical simulation

IF 4.7 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Sustainable Cement-Based Materials Pub Date : 2024-07-21 DOI:10.1080/21650373.2024.2380508
Qamar Shahzad, Muhammad Akbar, M. Alzara, Ahmed M. Yosri, Nadeem Abbas, Yasser R. Zaghloul
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来源期刊
CiteScore
6.60
自引率
15.90%
发文量
71
期刊介绍: The Journal of Sustainable Cement-Based Materials aims to publish theoretical and applied researches on materials, products and structures that incorporate cement. The journal is a forum for discussion of research on manufacture, hydration and performance of cement-based materials; novel experimental techniques; the latest analytical and modelling methods; the examination and the diagnosis of real cement and concrete structures; and the potential for improved cement-based materials. The journal welcomes original research papers, major reviews, rapid communications and selected conference papers. The Journal of Sustainable Cement-Based Materials covers a wide range of topics within its subject category, including but are not limited to: • raw materials and manufacture of cement • mixing, rheology and hydration • admixtures • structural characteristics and performance of cement-based materials • characterisation techniques and modeling • use of fibre in cement based-materials • degradation and repair of cement-based materials • novel testing techniques and applications • waste management
期刊最新文献
Use of fresh properties to predict mechanical properties of sustainable concrete incorporating recycled concrete aggregate A study on the effect of mixture constituents on washout resistance, mechanical, and transport properties in the context of underwater 3D concrete printing Time-dependent buildability evaluation of 3D printed concrete: experimental validation and numerical simulation Insight into the performance of composite binder with high-volume steel slag, blast furnace slag and desulfurization gypsum Mix design of FA-GGBS based lightweight geopolymer concrete incorporating sintered fly ash aggregate as coarse aggregate
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