À propos de cet article

Citez

Abdul-Razzaq, K.S. (2017) Proposing a new type of structural slurry infiltrated concrete (SSICON). Journal of Building Engineering, 13, 254-265.10.1016/j.jobe.2017.08.009 Search in Google Scholar

Alves, M.F., Cremonini, R.A. & Dal Molin, D.C.C. (2004) A comparison of mix proportioning methods for high-strength concrete. Cement and Concrete Composites, 26(6), 613-621.10.1016/S0958-9465(03)00036-2 Search in Google Scholar

Atiş, C.D. & Karahan, O. (2009) Properties of steel fiber reinforced fly ash concrete. Construction and Building Materials.10.1016/j.conbuildmat.2007.11.002 Search in Google Scholar

Aygün, B., Şakar, E., Agar, O., Sayyed, M.I., Karabulut, A. & Singh, V.P. (2021) Development of new heavy concretes containing chrome-ore for nuclear radiation shielding applications. Progress in Nuclear Energy, 133.10.1016/j.pnucene.2021.103645 Search in Google Scholar

Benaicha, M., Belcaid, A., Alaoui, A.H., Jalbaud, O. & Burtschell, Y. (2019) Rheological characterization of self-compacting concrete: New recommendation. Structural Concrete, 20(5), 1695-1701.10.1002/suco.201900154 Search in Google Scholar

Bolomey, J. (1927) Determination of the compressive strength of mortars and concretes. Bulletin Technique de La Suisse Romande, 16, 22-24. Search in Google Scholar

de Brito, J., Kurda, R. & da Silva, P.R. (2018) Can we truly predict the compressive strength of concrete without knowing the properties of aggregates? Applied Sciences (Switzerland), 8(7).10.3390/app8071095 Search in Google Scholar

BS EN 12350-5 (2009) Testing Fresh ConcretePart 5: Flow Table Test. British Standard. Search in Google Scholar

BS EN 12390-8:2009 (2009) Testing Hardened Concrete – Part 8: Depth of Penetration of Water under Pressure. British Standard. Search in Google Scholar

Concrete. Specification, Performance, Production and Conformity (2013), European Committee for Standardization (CEN)). Search in Google Scholar

Gheibi, M., Karrabi, M., Shakerian, M. & Mirahmadi, M. (2018) Life cycle assessment of concrete production with a focus on air pollutants and the desired risk parameters using genetic algorithm. Journal of Environmental Health Science and Engineering, 16(1), 89-98.10.1007/s40201-018-0302-x614823430258645 Search in Google Scholar

Halbiniak, J., Katzer, J., Major, M. & Major, I. (2020) A proposition of an in situ production of a blended cement. Materials, 13(10), 2289.10.3390/ma13102289728810032429237 Search in Google Scholar

Hornakova, M., Katzer, J., Kobaka, J. & Konecny, P. (2019) Lightweight SFRC benefitting from a pre-soaking and internal curing process. Materials, 12(24).10.3390/ma12244152694761931835727 Search in Google Scholar

Johnson, P.E., Smith, M.O. & Adams, J.B. (1985) Quantitative analysis of planetary reflectance spectra with principal components analysis. Journal of Geophysical Research.10.1029/JB090iS02p0C805 Search in Google Scholar

Kansal, C.M. & Goyal, R. (2021) Analysing mechanical properties of concrete with nano silica, silica fume and steel slag. Materials Today: Proceedings available from <https://linkinghub.elsevier.com/retrieve/pii/S2214785320407503>.10.1016/j.matpr.2020.12.1032 Search in Google Scholar

Kassambara, A. (2017) Practical guide to principal component methods in R: PCA, M (CA), FAMD, MFA, HCPC, Factoextra. STHDA 2, 1-155. Search in Google Scholar

Katzer, J., Kobaka, J. & Ponikiewski, T. (2020) Influence of crimped steel fibre on properties of concrete based on an aggregate mix of waste and natural aggregates. Materials, 13(8).10.3390/ma13081906721623632316631 Search in Google Scholar

Kobaka, J. (2021) Principal component analysis as a statistical tool for concrete mix design. Materials, 14(10), 2668.10.3390/ma14102668816064934069711 Search in Google Scholar

Kobaka, J., Katzer, J. & Zarzycki, P.K. (2019) Pilbara craton soil as a possible lunar soil simulant for civil engineering applications. Materials, 12(23), 1-11.10.3390/ma12233871692663531771218 Search in Google Scholar

Kumar, D.C. (2013) Genetic algorithm based optimum design of prestressed concrete beam. International Journal for Computational Civil and Structural Engineering, 3(3), 644-654. Search in Google Scholar

Mehta, P.K. & Aietcin, P.C.C. (1990) Principles underlying production of high-performance concrete. Cement, Concrete and Aggregates, 12(2), 70-78.10.1520/CCA10274J Search in Google Scholar

Pieters, C. (2002) Statistical analysis of the links among lunar mare soil mineralogy, chemistry, and reflectance spectra. Icarus, 155(2), 285-298.10.1006/icar.2001.6749 Search in Google Scholar

Rossi, P. (1997) Strain rate effects in concrete structures: The LCPC experience. Materials and Structures/Materiaux et Constructions.10.1007/BF02539277 Search in Google Scholar

Salem, M.A.A. & Pandey, R.K. (2015) Effect of cement-water ratio on compressive strengthand density of concrete. International Journal of Engineering Research and Technology (IJERT), 4(2). Search in Google Scholar

Shen, W., Li, F. & Lu, C. (2011) Study on improving overall calculation method of mix design method for fly ash Hpc. Advanced Materials Research, 163-167, 1414-1418. Search in Google Scholar

Singh, S.B., Munjal, P. & Thammishetti, N. (2015) Role of water/cement ratio on strength development of cement mortar. Journal of Building Engineering [online], 4, 94-100.10.1016/j.jobe.2015.09.003 Search in Google Scholar

To Joseph Aspdin, of Leeds, in the County of York, Bricklayer, for His New Invented Improvement in the Mode of Producing an Artificial Stone (1826). Journal of the Franklin Institute, 1(3), 146-149.10.1016/S0016-0032(26)91571-8 Search in Google Scholar

Xie, X. (2012) The design of mix proportion of high-performance concrete for passenger dedicated railway based on overall calculation method. Applied Mechanics and Materials, 193-194, 814-82110.4028/www.scientific.net/AMM.193-194.814 Search in Google Scholar

Xuan, D., Zhan, B. & Poon, C.S. (2016) Development of a new generation of eco-friendly concrete blocks by accelerated mineral carbonation. Journal of Cleaner Production, 133, 1235-1241.10.1016/j.jclepro.2016.06.062 Search in Google Scholar

Zarzycki, P.K. (2017) Application of multivariate statistical techniques in chromatographic and spectroscopic fingerprinting of complex food and environmental samples. Journal of AOAC International.10.5740/jaoacint.16-040628059048 Search in Google Scholar

Zarzycki, P.K. & Katzer, J. (2018) Assessment of lunar soil simulants based on multivariate statistics. Earth and Space 2018: Engineering for Extreme Environments – Proceedings of the 16th Biennial International Conference on Engineering, Science, Construction, and Operations in Challenging Environments.10.1061/9780784481899.001 Search in Google Scholar

Zarzycki, P.K., Katzer, J. & Domski, J. (2017) Fast classification of fibres for concretebased on multivariate statistics. Computers and Concrete, 20(1). Search in Google Scholar

Zhang, H., Zou, K., Ji, X., Zhang, C., Tang, F. & Wu, X. (2015) Mixture design methods for high performance concrete a review. Proceedings of the 2015 International Conference on Advanced Engineering Materials and Technology. Paris, Atlantis Press.10.2991/icaemt-15.2015.125 Search in Google Scholar

Zhang, J., Huang, Y., Ma, G. & Nener, B. (2021) Mixture optimization for environmental, economical and mechanical objectives in silica fume concrete: A novel frame-work based on machine learning and a new meta-heuristic algorithm. Resources, Conservation and Recycling, 167, 105395.10.1016/j.resconrec.2021.105395 Search in Google Scholar

eISSN:
2544-963X
Langue:
Anglais
Périodicité:
Volume Open
Sujets de la revue:
Architecture and Design, other, Engineering, Civil Engineering, Materials, Environmental Engineering