Experiment and Simulation on the Flexural Properties of Fiber-Paper Honeycomb Sandwich Structure Compound Panel

Article Preview

Abstract:

Two equivalent models based on sandwich panel theory and equivalent panel theory were discussed in this paper. By analyzing the performance of fiber - paper honeycomb sandwich structure compound panel by bending load, the computational results are in accordance with test and Engineering software ANSYS. Therefore, it shows that the finite element equivalent models are reasonable and practical for the optimization design of fiber - paper honeycomb sandwich composites.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

80-85

Citation:

Online since:

October 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] L.J. Gibson, M.F. Ashby, P.S. Cellular Solids: Structure and Properties (Second Edition) (Cambridge: Cambridge University Press, 1997).

Google Scholar

[2] C.Z. Zhang: the Mechanical Analytic Theory of Composite Laminated Plate and Shell (Beijing: National Defense Industry Press, China 2009).

Google Scholar

[3] X.Y. Wang, F.B. Yang: The design principle and application of sandwich structure composites (Beijing: Chemical Industry Press, 2006).

Google Scholar

[4] L.J. Xia, X.D. Jin, Y.B. Wang: Jouranl of Shang Hai Jiao Tong University, Vol. 37, (2003) No.7, pp.999-1001(In Chinese).

Google Scholar

[5] A.R. Othman, D.C. Barton: CompositeStructures, Vol. 85, (2008), pp.126-138.

Google Scholar

[6] M.F. He, W.B. Hu: Materials and Design, Vol. 29, (2008), p.709–713.

Google Scholar

[7] T.S. Han, A. URAL, C.N. Chen: International Journal of Fracture, Vol.115, (2002), p.101–123.

Google Scholar

[8] A. Abbadi, Y. Koutsawa, A. Carmasol, S. Belou- ettar: Simulation Modelling Practice and Theory, (2009) No.17, p.1533~1547.

DOI: 10.1016/j.simpat.2009.05.008

Google Scholar

[9] M.H. Fu, J.R. Yin: Acta Mechanica Sinica, Vol. 31, (1999) No.1, pp.113-118(In Chinese).

Google Scholar

[10] G.X. Cheng, X.Y. Zheng, D. Zhang: Journal of Projictiles, Rockets, Missiles and Guidance, Vol. 24, (2004) No.5, pp.568-573(In Chinese).

Google Scholar

[11] J.J. Shi, D.H. Wu, B. Chi: Fiber Composites, Vol. 40 (2006) No.3, pp.40-42(In Chinese).

Google Scholar

[12] J. Cheng, W.M. Zeng, R.H. Fang: Journal of Experimental Mechanics, Vol.18 (2003) No.1, pp.50-55(In Chinese).

Google Scholar

[13] S.J. Xu, X.R. Kong B.L. Wang:Acta Materiae Compositae Sinica, Vol. 17, (2000) No.3, pp.92-95(In Chinese).

Google Scholar

[14] S. Lang, H.L. Chen, T.N. Chen: Journal of Aeronautical Materials, Vol. 24, (2004) No.3, p.26~31(In Chinese).

Google Scholar