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論文・分野から探す

機構に所属する研究者の発表した論文を、タイトル・抄録・分野などから検索することができます。論文の分野はクラリベイト社のESI分類を参考に分類しています(Materials Science, Physics, Chemistry, Engineering, Biologyなど)。

最終更新日: 2025年02月13日

532件の論文が見つかりました。論文は出版年月日順に表示しています。(ヘルプ)
  • Elango Chandiran, Yukiko Ogawa, Rintaro Ueji, Alok Singh, Hidetoshi Somekawa. Enhancement of damping capacity by deformation-induced martensitic transformation in Mg–Sc alloy. Materials Science and Engineering: A. 880 (2023) 145198 10.1016/j.msea.2023.145198
  • Yuhei Ogawa, Osamu Takakuwa, Kaneaki Tsuzaki. Solid-solution hardening by hydrogen in Fe–Cr–Ni-based austenitic steel: Temperature and strain rate effects. Materials Science and Engineering: A. 879 (2023) 145281 10.1016/j.msea.2023.145281
  • K. Wada, C. Shibata, H. Enoki, T. Iijima, J. Yamabe. Hydrogen-induced intergranular cracking of pure nickel under various strain rates and temperatures in gaseous hydrogen environment. Materials Science and Engineering: A. 873 (2023) 145040 10.1016/j.msea.2023.145040
  • Hidetoshi Somekawa, Norie Motohashi, Shuji Kuroda, Toshihiko Mandai. Mechanical and functional properties of ultra-thin Mg foils. Materials Science and Engineering: A. 872 (2023) 144934 10.1016/j.msea.2023.144934
  • S Masuyama, K Kamiya, T Numazawa. Characteristics of reciprocating speed of a low power consumption 4 K G-M cryocooler. IOP Conference Series: Materials Science and Engineering. 1240 [1] (2022) 012129 10.1088/1757-899x/1240/1/012129 Open Access
  • Haruki Nishida, Yuhei Ogawa, Kaneaki Tsuzaki. Chemical composition dependence of the strength and ductility enhancement by solute hydrogen in Fe–Cr–Ni-based austenitic alloys. Materials Science and Engineering: A. 836 (2022) 142681 10.1016/j.msea.2022.142681
  • Kwangsik Kwak, Yoji Mine, Shigekazu Morito, Takahito Ohmura, Kazuki Takashima. Correlation between strength and hardness for substructures of lath martensite in low- and medium-carbon steels. Materials Science and Engineering: A. 856 (2022) 144007 10.1016/j.msea.2022.144007
  • Hidetoshi Somekawa, Motohiro Yuasa, Daisuke Ando, Yoshikazu Todaka. Predominant factor for effectively forming kink boundaries in Mg–Y–Zn alloy through wrought-process. Materials Science and Engineering: A. 858 (2022) 144168 10.1016/j.msea.2022.144168
  • T Kato, Y Kato, O Umezawa, Y Ono, T Yuri, A Nishimura, S Kumagai. Tensile Properties of 22Cr-12Ni Austenitic Stainless Steel Thick Plates and Bars at Cryogenic Temperatures. IOP Conference Series: Materials Science and Engineering. 1241 [1] (2022) 012001 10.1088/1757-899x/1241/1/012001 Open Access
  • Rintaro Ueji, Hidetoshi Somekawa, Tadanobu Inoue, Toru Hara. Compression temperature to activate kinking in pearlitic steel. Materials Science and Engineering: A. 857 (2022) 144018 10.1016/j.msea.2022.144018
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