Topology Optimization of Constrained Layer Damping Treatment Plate Under Harmonic Excitations
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-44947-5_11
Reference9 articles.
1. Deng, J., Zheng, L., Zeng, P., et al.: Passive constrained viscoelastic layers to improve the efficiency of truncated acoustic black holes in beams. Mech. Syst. Signal Process. 118, 461–476 (2019)
2. Hujare, P.P., Sahasrabudhe, A.D.: Experimental investigation of damping performance of viscoelastic material using constrained layer damping treatment. Proc. Mater. Sci. 5, 726–733 (2014)
3. Liu, Q.M., Li, X.Z., Zhang, X., et al.: Applying constrained layer damping to reduce vibration and noise from a steel-concrete composite bridge: an experimental and numerical investigation. J. Sandw. Struct. Mater. 22(6), 1743–1769 (2020)
4. Li, L., Liao, W.H., Zhang, D.G., et al.: Vibration analysis of a free moving thin plate with fully covered active constrained layer damping treatment. Compos. Struct. 235, 1–16 (2020)
5. Luo, H., Chen, R., Guo, S., et al.: Topology optimization of hard-coating thin plate for maximizing modal loss factors. Coatings 11(7), 774–788 (2021)
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