Dynamic analysis using finite element method for a nonlinear spring-supported disk: Technique to reduce second-order distortion due to diaphragm shape

Author:

WATANABE Mitsuharu1,YAMAGUCHI Takao2,SASAJIMA Manabu1,SASANUMA Tatsushi1,KOIKE Yoshio1

Affiliation:

1. Strategic Research & Development Div., Foster Electric Co., Ltd

2. Mechanical System Eng. Department, Gunma University

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference18 articles.

1. Greiner, R. A., Travis, M. and Sims, Jr., Loudspeaker distortion reduction*, Journal of the Audio Engineering Society, Vol.32, No.12 (1984), pp.956-963.

2. Johnson, C. D. and Kienholz, D. A., Finite element prediction of damping structures with constrained viscoelastic layers, AIAA Journal, Vol.70 (1980), p.187.

3. Klippel, W., The mirror filter-a new basis for reducing nonlinear distortion and equalizing response in woofer systems, Journal of the Audio Engineering Society, Vol.40 (1992), pp.675-691.

4. Kondo, T., Sasaki, T. and Ayabe, T., Forced vibration analysis of a straight-line beam structure with nonlinear support elements, Transactions of the Japan Society of Mechanical Engineers C, Vol.67 (2001), pp.914-921. (in Japanese).

5. Novák, A., Lotton, P. and Simon, L., Dynamic measurement of loudspeaker suspension parameters using an active harmonic control technique, Audio Engineering Society Convention 136, (2014), pp.26-29.

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