A Study of Magnetic Charge per Unit Area of Dipole Model for the NDE

Author:

Hwang Ji Seong1,Jun Jong Woo1,Choi Se Ho2,Kim Cheol Woong3,Ogawa Kazuhiro4,Lee Jin Yi1

Affiliation:

1. Chosun University

2. POSCO

3. Korea University

4. Tohoku University

Abstract

Nondestructive testing using magnetic field is useful for detection of a crack on ferromagnetic material. The magnetic field distribution has to be obtained for quantitative evaluation of crack direction, size, and shape. Also, a crack can be evaluated by using the inverse problem analysis. However, an analysis method using a dipole model can be used to analyze the magnetic field distribution around a crack at a higher speed than the finite element method (FEM). Therefore, a dipole model simulation can provide useful information which can be used for the inverse problem analysis. However, the magnetic charge per unit area, m, and the permeability, μ, has been treated as constants. Therefore, analyzed results have been different from experimental results in most cases. This paper proposes the improved dipole model simulation method, which assumes that the magnetic charges per unit area exist at the section areas, edge lines and summits of a crack. Also, the magnetic charges per unit area were assumed to depend on the square of the crack depth. The improved method is validated by comparing its results with the experiment results obtained with the use of the magnetic camera.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference9 articles.

1. J. Lee, J. Hwang, K. Lee and S. Choi: Key Engineering Materials Vol. 306-308 (2006), p.235.

2. J. Hwang and J. Lee: Proc. ICCAS2005 (2005), p.1830.

3. J. Lee, J. Hwang, and S. Choi: Int. Journal of Mod. Phs. B (2006), in press.

4. J. Lee and J. Hwang: Key Engineering Materials Vol. 321-323 (2006), p.1447.

5. J. Lee, W. Choe, M. Kim, D. Kim and M. Kang, U.S. Patent 6, 683, 452 B2. (2004).

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