Effect of epoxy impregnation on strain distribution of materials in Bi2223 superconducting coils by using synchrotron X-ray diffraction
Autor: | Xinzhe Jin, Kozo Osamura, Hideaki Maeda, Takahisa Shobu, Shutaro Machiya, Kentaro Kajiwara |
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Rok vydání: | 2015 |
Předmět: |
Diffraction
Superconductivity Materials science Mechanical Engineering Superconducting wire Metals and Alloys Epoxy engineering.material Synchrotron law.invention Crystallography Mechanics of Materials law Magnet visual_art Materials Chemistry engineering visual_art.visual_art_medium Composite material Penetration depth Diffractometer |
Zdroj: | Journal of Alloys and Compounds. 650:444-449 |
ISSN: | 0925-8388 |
Popis: | Synchrotron X-rays have been used to observe strain distributions in composite materials such as superconducting wires with a thickness of less than about 2 mm. In applications that employ wound coils of superconducting wire, it is necessary to understand the strain distribution within the coiled wire. Superconducting wires such as Bi2223 and REBCO wires approximately 4–5 mm wide are commercially available. Coiled wires of this width are too thick to easily measure using conventional X-ray techniques, especially the inner strain, because the penetration depth tends to be around 2 mm. Therefore, the beam penetration must be improved, and it is known that the penetration depth of an X-ray beam depends upon the beam energy, beam intensity, measurement material, and measurement method. In this study, we used a white X-ray diffractometer at SPring-8 to develop a method of observing the strain distribution in Bi2223 superconducting coils winded by a 4.5 mm wide Bi2223 wire. We successfully observed a clear (400) peak of the Bi2223 phase by an appropriate measurement condition, and then observed the strains of each material in the Bi2223 coils with and without epoxy impregnation. This is the first time that we have obtained the strain of a Bi2223 phase in coiled wire using synchrotron X-ray diffraction. Further synchrotron-based study of superconducting coils will be useful in the development of advanced high-field magnets. The appropriate measurement method and the obtained measurement results are presented in this paper. |
Databáze: | OpenAIRE |
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