1995•Journal of the Magnetics Society of JapanOpen access

Two-Dimensional Magnetostriction of Silicon Steel Sheets. I. Magnetostriction of the Arbitrary Direction under an Alternating Magnetic Flux.

Masato Enokizono, Takashi Todaka, Seiichi Kanao

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Abstract

This paper describes the magnetostriction of an arbitrary direction under an alternating magnetic flux measured by a two-dimensional magnetic measurement method. The magnetostriction of an arbitrary direction was measured by three-axial strain gage and analyzed by the tensor method. In the case of non-oriented silicon steel sheets, the magnetostriction in a direction 45 degrees from the rolling direction was larger than in the rolling direction. In the case of grain-oriented silicon steel sheets, the magnetostriction in a direction 90 degrees from the rolling direction was larger than in the rolling direction.

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This paper describes the magnetostriction of an arbitrary direction under an alternating magnetic flux measured by a two-dimensional magnetic measurement method. The magnetostriction of an arbitrary direction was measured by three-axial strain gage and analyzed by the tensor method. In the case of non-oriented silicon steel sheets, the magnetostriction in a direction 45 degrees from the rolling direction was larger than in the rolling direction. In the case of grain-oriented silicon steel sheets, the magnetostriction in a direction 90 degrees from the rolling direction was larger than in the rolling direction.

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Available abstract

This paper describes the magnetostriction of an arbitrary direction under an alternating magnetic flux measured by a two-dimensional magnetic measurement method. The magnetostriction of an arbitrary direction was measured by three-axial strain gage and analyzed by the tensor method. In the case of non-oriented silicon steel sheets, the magnetostriction in a direction 45 degrees from the rolling direction was larger than in the rolling direction. In the case of grain-oriented silicon steel sheets, the magnetostriction in a direction 90 degrees from the rolling direction was larger than in the rolling direction.

Key concepts: Magnetostriction, Electrical steel, Materials science, Condensed matter physics, Magnetic flux, Strain gauge, Magnetic field, Inverse magnetostrictive effect

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