A Finite Element Study on the Effect of Bulk Material on the Auxetic Behavior of Additively Manufactured Three-Dimensional Reentrant Honeycomb
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-19-0676-3_21
Reference9 articles.
1. Zhang, J., Lu, G., You, Z.: Large deformation and energy absorption of additively manufactured auxetic materials and structures: a review. Composites Part B 201, 108340 (2020)
2. Alex, R., Dulara, K., Tuan, N., Priyan, M., Gursel, A., Andrew, W.: Development and performance evaluation of large-scale auxetic protective systems for localized impulsive loads. International Journal of Protective Structures 10, 390–417 (2019)
3. Faraci, D., Driemeier, L., Comi, C.: Bending-dominated auxetic materials for wearable protective devices against impact. J. Dynamic Behavior Mater. 2199–7454 (2020)
4. Yang, L., Harrysson, O., West, H., Cormier, D.: Mechanical properties of 3D re-entrant honeycomb auxetic structures realized via additive manufacturing. Int. J. Solids Struct. 69–70, 475–490 (2015)
5. Ou, Y., Yan, S., Wen, P.: In-plane impact dynamics analysis of re-entrant honeycomb with variable cross-section. Computer Modeling in Engineering Sciences (2020)
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