Exploring Viscosity and Friction Through Temperature: Understanding Self-Heating Dynamics of Non-Newtonian 3D Printable Construction Materials via CFD Modeling
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-70031-6_54
Reference7 articles.
1. Comminal, R., Leal da Silva, W.R., Andersen, T.J., Stang, H., Spangenberg, J.: Modelling of 3D concrete printing based on computational fluid dynamics. Cem. Concr. Res. (2020https://doi.org/10.1016/J.CEMCONRES.2020.106256
2. Spangenberg, J., da Silva, W.R.L., Comminal, R., Mollah, M.T., Andersen, T.J., Stang, H.: Numerical simulation of multi‐layer 3D concrete printing. RILEM Tech. Lett. (2021).https://doi.org/10.21809/RILEMTECHLETT.2021.142
3. Roussel, N., Spangenberg, J., Wallevik, J., Wolfs, R.: Numerical simulations of concrete processing: from standard formative casting to additive manufacturing. Cem. Concr. Res. (2020https://doi.org/10.1016/J.CEMCONRES.2020.106075
4. Ben Azouz, K., Bekkour, K., Dupuis, D.: Influence of the temperature on the rheological properties of bentonite suspensions in aqueous polymer solutions. Appl. Clay Sci. (2016). https://doi.org/10.1016/J.CLAY.2016.01.016
5. Jacquet, Y., Perrot, A.: Evolutionary approach based on thermoplastic bio-based building material for 3D printing applications: an insight into a mix of clay and wax. In: Amziane, S., Merta, I., Page, J. (eds.) Bio-Based Building Materials. ICBBM 2023. RILEM Bookseries, vol. 45. Springer, Cham (2023). https://doi.org/10.1007/978-3-031-33465-8_21
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