3D Printed Bio-Based Sandwich with an Anti-trichiral Lattice: Bending Properties and Failure Mechanisms
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-57324-8_30
Reference25 articles.
1. Calabrese, L., Proverbio, E.: A review on the applications of acoustic emission technique in the study of stress corrosion cracking. Corros. Materials Degrad. 2(1), 1–30 (2020)
2. Craveiroa, F., Duartec, J.P., Bartoloa, H., Bartolod, P.J.: Additive manufacturing as an enabling technology for digital construction: a perspective on Construction 4.0. Sustain. Dev. 4(6) (2019)
3. Fu, Y., Sadeghian, P.: Flexural and shear characteristics of bio-based sandwich beams made of hollow and foam-filled paper honeycomb cores and flax fiber composite skins. Thin-Walled Struct. 153, 106834 (2020)
4. Ghafouri, M., Ghassabi, M., Zarastvand, M.R., Talebitooti, R.: Sound propagation of three-dimensional sandwich panels: influence of three-dimensional re-entrant auxetic core. AIAA J. 60(11), 6374–6384 (2022)
5. Hamrouni, A., Rebiere, J.-L., El Mahi, A., Beyaoui, M., Haddar, M.: Experimental analysis of the static and dynamic behavior of 3D printed bio-based conventional and auxetic architectural materials. Int. J. Appl. Mech. 14(10), 2250025 (2022). https://doi.org/10.1142/S1758825122500259
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