3D-Printed Bio-Sourced Meta-material: Tensile Properties

Author:

Hamrouni A.,Rebiere J. L.,ElMahi A.,Beyaoui Moez,Haddar Mohamed

Publisher

Springer Nature Switzerland

Reference18 articles.

1. García-Collado, A., Blanco, J.M., Gupta, M.K., Dorado-Vicente, R.: Advances in polymers based multi-material additive-manufacturing techniques: state-of-art review on properties and applications. Addit. Manuf. 50, 102577 (2022)

2. Hamrouni, A., Rebiere, J.L., El Mahi, A., Beyaoui, M., Haddar, M.: Damping behavior of bio-based anti-trichiral materials made with additive manufacturing. In: Akrout, A., Abdennadher, M., Feki, N., Abbes, M.S., Chaari, F., Haddar, M. (eds.) Advances in Acoustics and Vibration IV. ICAV 2022. Applied Condition Monitoring, vol. 22, pp. 214–223. Springer, Cham (2023a). https://doi.org/10.1007/978-3-031-34190-8_24

3. Hamrouni, A., Rebiere, J.-L., El Mahi, A., Beyaoui, M., Haddar, M.: Static study of bio-based architectural materials made with 3D printing technology. In: Akrout, A., Abdennadher, M., Feki, N., Abbes, M.S., Chaari, F., Haddar, M. (eds.) Advances in Acoustics and Vibration IV, ICAV 2022. Applied Condition Monitoring, vol. 22, pp 224–233. Springer, Cham (2023b). https://doi.org/10.1007/978-3-031-34190-8_25

4. Hamrouni, A., Rebiere, J.-L., El Mahi, A., Beyaoui, M., Haddar, M.: Experimental and finite element analyses of a 3D printed sandwich with an auxetic or non-auxetic core. J. Sandwich Struct. Mater., 10996362231151454 (2023c). https://doi.org/10.1177/10996362231151454

5. Hamrouni, A., Rebiere, J.-L., El Mahi, A., Beyaoui, M., Haddar, M.: Experimental and numerical investigation of the static behavior of a 3D printed bio-based anti-trichiral sandwich. J. Compos. Mater. 57(13), 2161–2178 (2023). https://doi.org/10.1177/00219983231169332

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