Microstructure and Superconductive Property of MgB2/Al Based Composite Materials
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概要
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MgB2 superconducting wires are interesting as the alternative conductors of Nb-based superconducting wires applied for the advanced nuclear fusion reactor because of the decay time of the induced radioactivity. However, MgB2 is difficult for practical use because of its unworkable and lower critical current density (JC) in a high magnetic field than Nb-based superconductive materials. We have developed the original method of three-dimensional penetration casting (3DPC) to fabricate the MgB2/Al composite materials. In the composite materials we made, MgB2 particles dispersed in the matrix uniformly. This makes these composite materials can be processed by machining, extrusion and rolling. And the TC of the made composite materials was determined by electrical resistivity and magnetization to be 37∼39 K. In this work, we made composite materials with ground MgB2 particles with the purpose of extruding thinner wires of composite material. Furthermore, we successfully produced ϕ1 mm wires and also changed the matrix from pure Al to Al-In alloy. JC of composite materials with the matrix of Al-In alloy was calculated with the width of the magnetic hysteresis based on the Extended Bean Model. The result was better than that of MgB2/Al composite material without Indium. Microstructures of these samples had been confirmed by SEM observation.
- 社団法人 プラズマ・核融合学会の論文
著者
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HISHINUMA Yoshimitsu
National Institute for Fusion Science
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Aoyama Shigeki
Nikkei Niigata Co. Ltd.
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Kawabata Tokimasa
Graduate School Of Science And Engineering For Research University Of Toyama
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Nishimura Katsuhiko
Graduate School Of Sci. And Engineering Univ. Of Toyama
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Matsuda Kenji
Graduate School Of Bio-applications And Systems Engineering Tokyo University Of Agriculture And Tech
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IKENO Susumu
Hokuriku Polytechnic College
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TOKAI Daisuke
Graduate School of Science and Engineering for Education, University of Toyama
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Ikeno Susumu
Hokuriku Polytechnic Collage
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