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Effective AC response of nonlinear spherical coated composite |
Hao Yan-Hua(郝艳华)a)c), Chen Xiao-Gang(陈小刚)a)†, Hou Rui(侯睿)a), and Wang Rui(王瑞)b) |
a College of Science, Inner Mongolia University of Technology, Hohhot 010051, China; b College of Mechanical Engineering, Inner Mongolia University of Technology, Hohhot 010051, China; c School of Mathematics and Computer Science, Shanxi Datong University, Datong 037009, China |
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Abstract An effective nonlinear response of a nonlinear composite with spherical coated inclusions randomly embedded in a host medium under the action of an external AC electric field, $E_a = E_1 \sin (\omega t) + E_3 \sin (3\omega t)$, is investigated using a perturbation method. The local potentials of the composite at higher harmonics are given both in the region of local inclusion particles and in the local host region under the external AC electric field. All effective nonlinear responses of the composite and the relationship between the effective nonlinear responses at the fundamental frequency and third harmonics are also studied for spherical coated inclusion in a dilute limit.
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Received: 25 October 2009
Accepted manuscript online:
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PACS:
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61.72.Qq
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(Microscopic defects (voids, inclusions, etc.))
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72.20.Dp
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(General theory, scattering mechanisms)
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72.80.Tm
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(Composite materials)
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Fund: Project supported by the Natural Science Foundation
of Inner Mongolia, China (Grant No.~200711020116), the Open Fund of the Key Laboratory of Ocean Circulation and Waves, Chinese Academy of Sciences (Grant No.~KLOCAW0805), the Research Fund of Higher Educ |
Cite this article:
Hao Yan-Hua(郝艳华), Chen Xiao-Gang(陈小刚), Hou Rui(侯睿), and Wang Rui(王瑞) Effective AC response of nonlinear spherical coated composite 2010 Chin. Phys. B 19 067202
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[1] |
Stroud D and Hui P M 1988 Phys. Rev. B 37 8719
|
[2] |
Levy O, Bergman D J and Stroud D G 1995 Phys. Rev. E 52 3184
|
[3] |
Niu J S, Luo Y and Ma B K 2002 Chin. Phys. 11 144
|
[4] |
Blumenfeld R and Bergman D 1991 Phys. Rev. B 44 7378
|
[5] |
Gu Y and Yu K W 2002 Chin. Phys. 11 601
|
[6] |
Levy O and Bergman D J 1993 J. Phys: Condens. Matter 5 7095
|
[7] |
Hui P M, Cheung P and Stroud D 1998 J. Appl. Phys. 84 3451
|
[8] |
Yu K W, Wang Y C, Hui P M and Gu G Q 1993 Phys. Rev. B 47 1782
|
[9] |
Gu G Q, Hui P M and Yu K W 2000 Physica B 279 62
|
[10] |
Wei E B, Tian J W and Song J B 2004 Chin. Phys. 13 388
|
[11] |
Wei E B, Song J B and Gu G Q 2004 Appl. Phys. 95 1377
|
[12] |
Wei E B, Song J B, Tian J W and Gu G Q 2003 Phys. Lett. A 309 160
|
[13] |
Gu G Q, Yu K W and Wang B H 1995 J. Appl. Phys. 78 1737
|
[14] |
Gu G Q and Yu K W 1991 Acta Phys. Sin. 40 709 (in Chinese)
|
[15] |
Chen X G, Wei E B and Song J B 2004 Commun. Theor. Phys. 41 771
|
[16] |
Chen X G, Liang F C and Wei E B 2005 Chin. Phys. 14 1217
|
[17] |
Shen Y Y, Chen X G, Cui W, Hao Y H and Li Q Q 2009 Chin. Phys. B 18 757
|
[18] |
Shen Y Y, Chen X G, Li Q Q, Cui W and Hao Y H 2009 Commun. Theor. Phys. 51 743
|
[19] |
Gu G Q and Yu K W 1992 Phys. Rev. B 46 4502
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