Osaka Kyoiku University Researcher Information
日本語 | English
Curriculum Vitaes
Profile Information
- Affiliation
- Associate Professor, Division of Math, Sciences, and Information Technology in Education, Osaka Kyoiku University
- Degree
- 博士(工学)(大阪大学)
- Contact information
- ixnrtex.osaka-kyoiku.ac.jp
- Researcher number
- 50404017
- J-GLOBAL ID
- 200901035640585842
- researchmap Member ID
- 5000022356
- External link
Research Interests
3Research Areas
8Research History
6-
Jul, 2015
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Apr, 2007 - Jun, 2015
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Jan, 2007 - Mar, 2007
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Apr, 2005 - Feb, 2006
Committee Memberships
37-
Apr, 2024 - Present
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Apr, 2024 - Present
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Apr, 2024 - Present
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Apr, 2024 - Present
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Apr, 2023 - Apr, 2024
Awards
8Papers
59-
Journal of Applied Polymer Science, 139(23) 52316-52316, Mar 11, 2022 Peer-reviewed
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Journal of Materials Science, 56(2) 1842-1854, Sep 23, 2020 Peer-reviewed
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Journal of Japan Foundry Engineering Society, 91(10) 703-709, Oct, 2019 Peer-reviewed
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MATERIALS TRANSACTIONS, 59(9) 1465-1470, Sep 1, 2018 Peer-reviewed
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Chemical Physics Letters, 706 564-567, Aug 16, 2018 Peer-reviewed
Misc.
31-
Science of Machine, 76(3) 165-173, Mar, 2024 InvitedCorresponding author
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Science of Machine, 76(2) 89-96, Feb, 2024 InvitedCorresponding author
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Science of Machine, 76(1) 1-8, Jan, 2024 InvitedCorresponding author
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Journal of Japan Thermal Spray Society, 59(33) 169-174, Jul 29, 2022 Peer-reviewedInvited
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大阪教育大学情報処理センター年報, 19 50-51, Apr 14, 2016 Lead authorCorresponding author
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2016 IEEE 16th International Conference on Nanotechnology (IEEE-NANO), 257-260, 2016
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72nd World Foundry Congress, WFC 2016, 281-282, 2016Influence of boron and nitrogen addition as one of the alloying element on the formation of solidification structure and the improvement of hardness after thermal treatments was investigated for high-speed-steel alloys (Fe-2%C-5%Cr-5%Mo-5%V). The macrohardness of the quenched specimens gradually increases with increasing quenching temperature. Nitrogen addition helps to improve the hardness as carbon does. Boron addition is also contributed to the increasing of hardness. B-containing specimens maintained higher tempered-hardness than HSS and N-containing specimens quenched at the peak hardness. The specimen, which contains high volume fraction of residual austenite, shows the superior secondary hardening after the optimized tempering.
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The 5th Korea-Japan Conference for Young Foundry Engineers (Oral), 128, 2013
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The 4th Korea-Japan Conference for Young Foundry Engineers, 118, 2011
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The 13th International Symposium on Materials Science and Engineering among Chonbuk National University, Harbin University and Kyushu University, 2011 Lead author
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The 4th Korea-Japan Conference for Young Foundry Engineers, 147, 2011
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The 4th Korea-Japan Conference for Young Foundry Engineers, 43, 2011
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The 3rd Japan-Korea Workshop for Young Foundry Engineers, 2009
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Proc. of Modeling of Casting and Solidification Processes Ⅶ, 281-287, 2009
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KIMS-Kyushu University Joint Symposium, 2007
Books and Other Publications
4-
Trans Tech Publications Ltd., 2010 (ISBN: 9783038134442)
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Transworld Research Network, Vol.1, pp.475-492, 2002 (ISBN: 817895057X)
Presentations
112-
日本機械学会関西学生会 2023年度学生員卒業研究発表講演会, (於 大阪工業大学), Mar 14, 2024
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The 74th World Foundry Congress 2022, (Bexco,Busan,Korea), Oct 17, 2022
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日本機械学会関西支部,2021年度関西学生会卒業研究発表講演会,第97期定時総会講演会,メカボケーション学生研究発表セッション(オンライン), Mar 16, 2022
Teaching Experience
13Professional Memberships
9-
Jul, 2019 - Present
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Jul, 2015 - Present
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Aug, 2013 - Present
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May, 2007 - Present
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May, 2000 - Present
Works
2Research Projects
22-
科学研究費助成事業, 日本学術振興会, Apr, 2022 - Mar, 2025
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2021 - 2023
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NEDO 「戦略的省エネルギー技術革新プログラム/実用化開発」, Jul, 2018 - Feb, 2022
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Jun, 2018 - Mar, 2020
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2015 - Mar, 2019
Industrial Property Rights
6Academic Activities
14-
Planning, Management, etc., Others日本溶射学会, Jul 3, 2024 - Jul 4, 2024
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Planning, Management, etc., Others日本産業技術教育学会近畿支部, Dec 3, 2023 - Dec 3, 2023
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Planning, Management, etc., Others日本溶射学会, Jun 15, 2023 - Jun 16, 2023
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Planning, Management, etc., Others日本鋳造工学会, May 18, 2023 - May 20, 2023
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Planning, Management, etc., Others日本産業技術教育学会近畿支部, Dec 4, 2022 - Dec 4, 2022
Social Activities
3Media Coverage
1-
Fabcross、Yahooニュース、EEtimes、MONOist、マイナビニュース(TECH+)、日本経済新聞(オンライン版)等, NEDOの「戦略的省エネルギー技術革新プログラム」で「ナノソルダー実用化による製造プロセス省エネ化技術の開発」に取り組むパナソニック ホールディングス(株)は、このたび東北大学、大阪教育大学、秋田大学、芝浦工業大学と共同で、従来よりも低い温度で電子部品を接合でき、接合後はパワーデバイスに必要な耐熱性が得られるナノソルダー接合材料を開発しました。本開発では、低融点金属と高融点金属を組み合わせた固液反応を用いることで、低温かつ短時間プロセスでの接合と200℃耐熱の両立を達成しました。 本開発の成果により、産業機器や電気自動車、鉄道などで使用されるパワーデバイスの組立工程に広く展開することが可能となり、パワーデバイス製造プロセスの省エネルギー化とともにカーボンニュートラルの実現に向けた大きな前進が期待できます。 https://www.nedo.go.jp/news/press/AA5_101549.html, Jun 21, 2022