MATERIALS TRANSACTIONS
Online ISSN : 1347-5320
Print ISSN : 1345-9678
ISSN-L : 1345-9678
Special Issue on Creation of Materials by Superthermal Field
Laser-Induced Melting and Crystal Growth of Sodium Ion Conductive β-NaFeO2
Masafumi HiratsukaTsuyoshi HonmaTakayuki Komatsu
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2023 年 64 巻 6 号 p. 1188-1193

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Laser irradiation of β-NaFeO2 shows local melting and crystal growth from the melt pool and sodium ion conductivity. Local melting, densification, and crystal growth were confirmed on the β-NaFeO2 surface through laser irradiation with a wavelength of 1 µm. Scanning electron microscopy and electron backscatter diffraction analysis confirmed anisotropic grain growth and grain boundary shrinkage in the laser-irradiated area. X-ray diffraction results suggested that the laser-irradiated area was in a low crystalline state. In addition, the precipitation of Fe3O4 in laser-irradiated β-NaFeO2 indicates a reduction reaction, suggesting that the laser-irradiated area is heated to 1500°C or higher. We confirmed that the structure change region could be controlled down to a thickness of about 10 µm by laser irradiation with varying laser power to β-NaFeO2.

Fig. 3 (a) (b) β-NaFeO2 and laser-irradiated β-NaFeO2 (P = 30 W, S = 500 mm s−1) of surface and (c) (d) cross-sectional SEM images. Fullsize Image
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© 2023 The Japan Institute of Metals and Materials
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