Enhancing stability of curved beams with functionally graded carbon nanotubes: a multi-faceted approach
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s41062-024-01598-z.pdf
Reference26 articles.
1. Mirzaali MJ et al (2020) Mechanics of bioinspired functionally graded soft-hard composites made by multi-material 3D printing. Compos Struct 237:111867
2. Cheng Z et al (2019) Numerical simulation of dynamic fracture in functionally graded materials using peridynamic modeling with composite weighted bonds. Eng Anal Boundary Elem 105:31–46
3. Li Y, Feng Z, Hao L, Huang L, Xin C, Wang Y, Bilotti E, Essa K, Zhang H, Li Z, Yan F (2020) A review on functionally graded materials and structures via additive manufacturing: from multi-scale design to versatile functional properties. Adv Mater Technol 5(6):1900981
4. Malikan M, Victor Eremeyev A, Krzysztof Kamil Żur (2020) Effect of axial porosities on the flexomagnetic response of in-plane compressed piezomagnetic nanobeams. Symmetry 12(12):1935
5. Norizan M, Nurazzi et al (2020) Carbon nanotubes: functionalization and their application in chemical sensors. RSC Adv 10(71):43704–43732
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