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By Moussa Karama; Joël Alexis

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7: Modeling results obtained for the damping as function of the frequency for C3 material in the case: (a) load 50 % and (b) load 90 %. 4). 5-7): it is observed that damping is slightly higher for C1 than that laminates U, C2 and C3. The damping of the laminates U, C2 and C3 is clearly reduced. When the loading rate is 90 % (Figs. 5-7): the damping behavior is practically as function of the fibre orientation which is more important than in the case in 50 % of loading rates. The maximum damping is at a C2 laminate (7 %).

Sperling. 4th ed, John Wiley & Sons 2006, ISBN-13 978-0-471-70606-9, p. 397-400. [6] M. 1036/0071455442, 2005, ISBN 0071455442. [7] F. Dal Maso et J. Meziere: Calcul des propriétés élastiques des tissus utilisés dans les matériaux composites, Oil & Gas Science and Technology - Rev. Curing: Encyclopedia of Polymer Science and Engineering 4, Wiley-Interscience 2nd edition 1986. [9] C. Barrere and F. Dal Maso : Résines époxy réticulées par des polyamines : structure et propriétés, Oil & Gas Science and Technology - Rev.

The dimension of the reinforcement and interphases are respectively (a1, b1, c1), (a2, b2, c2) and (a3, b3, c3). Note that all the resulting magnetoelectroelastic effective coefficients are predicted simultaneously and can be analyzed with respect to volume fractions and coating thicknesses. Various types and kinds of inclusion and interphase coatings such as void, elastic, piezoelectric and magnetolectric can be easily considered. 30 Behaviour of Materials Table 1. 7 0 0 0 0 0 0 Units: elastic constant GPa; dielectric constants C2/Nm2; magnetic constants Ns2/C2, piezoelectric constants C/m2; piezomagnetic constants N/Am; magnetoeletric coefficients Ns/VC.

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