Evaluation of stress distribution due to shearing in non-oriented electrical steel by using synchrotron radiation

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Abstract

The influence of the shearing process on the iron loss of non-oriented electrical steels with grain sizes of 10 μm-150 μm was investigated. The deterioration ratio of iron loss was clearly smaller in sample with small grain sizes. The droop height, reflecting the amount of plastic deformation, displayed a good relationship with the deterioration of iron loss under the effect of the material grain size. To clarify the strain distribution around the sheared edge, the elastic strain in a sheet sample with the thickness of 0.30 mm and grain size of 10 μm was evaluated by using synchrotron radiation. The width of the region of elastic strain due to shearing was two or three times of the material thickness. The results of the plastic strain distribution obtained by the measurements were then used to estimate the iron loss deterioration rate in 5 mm width sheared samples. The estimated loss deteriotation coincided with the actual measured iron loss.

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Zaizen, Y., Omura, T., Fukumura, M., Senda, K., & Toda, H. (2016). Evaluation of stress distribution due to shearing in non-oriented electrical steel by using synchrotron radiation. AIP Advances, 6(5). https://doi.org/10.1063/1.4944342

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