Frequency Response of Longitudinal Magnetoelectric Effect in Piezoelectric-Magnetostrictive Clamping Structure Coupled through Normal Stress

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Abstract:

Magnetoelectric (ME) materials have attracted continuous attention due to their potential applications in the fields of sensors, actuators, and transducers. A large ME coupling originated from a clamping structure was reported. ME coefficient of 0.95V cm1 Oe1 was obtained without amplifier at the planar acoustic frequency 60 KHz. The results show that large ME coupling can be obtained in the clamping structure through normal stress, and longitudinal ME effect could be better than transverse ME effect.

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37-40

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] L. Li, Xiang. Ming. Chen, Hai. Yan. Zhou, Joural of Alloys and Compounds Vol. 553(2013), 86-88.

Google Scholar

[2] K. Bi, Y. G. Wang, D. A. Pan, and W. Wu, Scr. Mater. Vol. 63(2010), 589.

Google Scholar

[3] M. Szklarska-Łukasik, P. Guzdek, M. Dudek, A. Pawlaczyk, J. Chmist, W. Dorowski, J. Pszczoła, Joural of Alloys and Compounds Vol. 549(2013), 276-282.

DOI: 10.1016/j.jallcom.2012.08.093

Google Scholar

[4] Evangelos Hristoforou,Aphrodite Ktena, Journal of Magnetism and Magnetic Materials Vol. 316(2007), 372-378.

Google Scholar

[5] J. P. Zhou, L. Meng, Z. H. Xia, P. Liu, and G. Liu, Appl. Phys. Lett. Vol. 92(2008), 062903.

Google Scholar

[6] C. M. Leung, S. W. Or, S. Zhang, and S. L. Ho, J. Appl. Phys. Vol. 107(2010), 09D918.

Google Scholar

[7] Y. Qi, L. Li, X. M. Chen, Journal of Applied Physics, Vol. 102(2007), 064103.

Google Scholar

[8] D. A. Pan, Y. Bai, Alex A. Volinsky, W. Y. Chu, L. J. Qiao, Applied Physics Letters, Vol. 92(2008), 052904.

Google Scholar

[9] H. M. Wang, E. Pan, W. Q. Chen, Journal of Applied Physics, Vol. 107(2010), 093514.

Google Scholar

[10] V. M. Petrov, G. Srinivasan, M. I. Bichurin, A. Gupta, Physical Review B, Vol. 75(2007), 224407.

Google Scholar

[11] M. I. Bichurin, D. Viehland, G. Srinivasan, Journal of Electroceramics, Vol. 19(2007), 243-250.

Google Scholar

[12] C. L. Zhang, W. Q. Chen, S. H. Xie, J. S. Yang, J. Y. Li, Applied Physics Letters, Vol. 94(2009), 102907.

Google Scholar

[13] W. Wu, K. Bi, Y.G. Wang, Journal of Materials Science, Vol. 46(2011), 1602-1605.

Google Scholar

[14] L. Li, X. M. Chen, Applied Physics A, Vol. 98(2010), 761-764.

Google Scholar

[15] K. Bi, W. Wu, Q. L. Gu, H. N. Cui, Y. G. Wang, Journal of Alloys and Compounds, Vol. 509(2011), 5163.

Google Scholar

[16] K. Bi, Y.G. Wang, D.A. Pan, and W. Wu, Appl. Phys. Lett. Vol. 98(2011), 133504.

Google Scholar

[17] G. Srinivasan, C. De Vreugd, V. Laletin, N. Paddubnaya, M. Bichurin, V. Petrov, and D. Filippov, Phys. Rev. B, Vol. 71(2005), 184423.

DOI: 10.1103/physrevb.71.184423

Google Scholar

[18] J. G. Wan, Z. Y. Li, Y. Wang, M. Zeng, G. H. Wang, and J. M. Liu, Appl. Phys. Lett. Vol. 86(2005), 202504.

Google Scholar