Research Article

Finite element-based buckling analysis of bio-inspired laminated composite plates

Volume: 1 Number: 1 February 28, 2025

Finite element-based buckling analysis of bio-inspired laminated composite plates

Abstract

The helicoidal structures can cater to the loads effectively and efficiently without large deflections or stresses. These structures can even sustain environmental loads without failing. Also, these structures can take impact loads without failing. The present work aims to carry out buckling analysis of bio-inspired helicoidal laminated composite plates using finite element-based model within the framework of ANSYS. The plate is modeled using SOLID191 finite element (20-node 3D layered structural solid). The present model is validated by comparing the present results with those available in the literature. Influence of end conditions over the buckling behavior of bio-inspired helicoidal laminated composite plates is explored. Some new results are also presented in the present work, which will serve as the benchmark for future studies.

Keywords

References

  1. Garg, A., & Chalak, H.D. (2021). Bending analysis of laminated sandwich plates under hygrothermal loadings. Materials Today: Proceedings, 42, 626–630. https://doi.org/10.1016/j.matpr.2020.11.045.
  2. Bouligand, Y. (1972). Twisted fibrous arrangements in biological materials and cholesteric mesophases. Tissue Cell, 4, 189–217. https://doi.org/10.1016/S0040-8166(72)80042-9.
  3. Ha, N.S., & Lu, G. (2020). A review of recent research on bio-inspired structures and materials for energy absorption applications. Composites Part B: Engineering, 181, 107496. https://doi.org/10.1016/j.compositesb.2019.107496.
  4. Wang, H., Wang, C., Hazell, P. J., Wright, A., Zhang, Z., Lan, X., Zhang, K., & Zhou, M. (2021). Insights into the high-velocity impact behaviour of bio-inspired composite laminates with helicoidal lay-ups. Polymer Testing, 103, 107348. https://doi.org/https://doi.org/10.1016/j.polymertesting.2021.107348.
  5. Reddy, J.N. (1989). On refined computational models of composite laminates. International Journal for Numerical Methods in Engineering, 27, 361–382. https://doi.org/10.1002/nme.1620270210.
  6. Noor, A.K., & Burton, W.S. (1992). Computational Models for High-Temperature Multilayered Composite Plates and Shells. Applied Mechanics Reviews, 45, 419–446. https://doi.org/10.1115/1.3119742.
  7. Zhang, Y.X., & Yang, C.H. (2009). Recent developments in finite element analysis for laminated composite plates. Composite Structures, 88, 147–157. https://doi.org/10.1016/j.compstruct.2008.02.014.
  8. Liew, K.M., Zhao, X., & Ferreira, A.J.M. (2011). A review of meshless methods for laminated and functionally graded plates and shells. Composite Structures, 93, 2031–2041. https://doi.org/10.1016/j.compstruct.2011.02.018.

Details

Primary Language

English

Subjects

Composite and Hybrid Materials

Journal Section

Research Article

Publication Date

February 28, 2025

Submission Date

November 14, 2024

Acceptance Date

January 9, 2025

Published in Issue

Year 2025 Volume: 1 Number: 1

APA
Garg, A. (2025). Finite element-based buckling analysis of bio-inspired laminated composite plates. Journal of Ceramics and Composites, 1(1), 1-5. https://izlik.org/JA93KU59BC
AMA
1.Garg A. Finite element-based buckling analysis of bio-inspired laminated composite plates. jcc. 2025;1(1):1-5. https://izlik.org/JA93KU59BC
Chicago
Garg, Aman. 2025. “Finite Element-Based Buckling Analysis of Bio-Inspired Laminated Composite Plates”. Journal of Ceramics and Composites 1 (1): 1-5. https://izlik.org/JA93KU59BC.
EndNote
Garg A (February 1, 2025) Finite element-based buckling analysis of bio-inspired laminated composite plates. Journal of Ceramics and Composites 1 1 1–5.
IEEE
[1]A. Garg, “Finite element-based buckling analysis of bio-inspired laminated composite plates”, jcc, vol. 1, no. 1, pp. 1–5, Feb. 2025, [Online]. Available: https://izlik.org/JA93KU59BC
ISNAD
Garg, Aman. “Finite Element-Based Buckling Analysis of Bio-Inspired Laminated Composite Plates”. Journal of Ceramics and Composites 1/1 (February 1, 2025): 1-5. https://izlik.org/JA93KU59BC.
JAMA
1.Garg A. Finite element-based buckling analysis of bio-inspired laminated composite plates. jcc. 2025;1:1–5.
MLA
Garg, Aman. “Finite Element-Based Buckling Analysis of Bio-Inspired Laminated Composite Plates”. Journal of Ceramics and Composites, vol. 1, no. 1, Feb. 2025, pp. 1-5, https://izlik.org/JA93KU59BC.
Vancouver
1.Aman Garg. Finite element-based buckling analysis of bio-inspired laminated composite plates. jcc [Internet]. 2025 Feb. 1;1(1):1-5. Available from: https://izlik.org/JA93KU59BC