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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: 2024年06月16日

383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)
  • Ding Rong Ou, Toshiyuki Mori, Fei Ye, Motoi Takahashi, Jin Zou, John Drennan. Microstructures and electrolytic properties of yttrium-doped ceria electrolytes. Acta Materialia. 54 [14] (2006) 3737-3746 10.1016/j.actamat.2006.04.003
  • A. Belyakov, Y. Kimura, K. Tsuzaki. Microstructure Evolution in Dual Phase Stainless Steel during Severe Deformation. Acta Materialia. 54 [9] (2006) 2521-2532 10.1016/j.actamat.2006.01.035
  • Qingchao Tian, Fuxing Yin, Takuya Sakaguchi, Kotobu Nagai. Reverse transformation behavior of a prestrained MnCu alloy. Acta Materialia. 54 [7] (2006) 1805-1813 10.1016/j.actamat.2005.12.007
  • Taichi Abe, Masato Shimono, Machiko Ode, Hidehiro Onodera. Thermodynamic modeling of the undercooled liquid in the Cu-Zr system. Acta Materialia. 54 [4] (2006) 909-915 10.1016/j.actamat.2005.10.019
  • J.X. Zhang, M. Sato, A. Ishida. Deformation Mechanism of Martensite in Ti-rich Ti-Ni Shape Memory Alloy Thin Films. Acta Materialia. 54 [4] (2006) 1185-1198 10.1016/j.actamat.2005.10.046
  • Y KIM, S LEE, T NISHIMURA, M MITOMO. Heat-resistant silicon carbide with aluminum nitride and scandium oxide. Acta Materialia. 53 [17] (2005) 4701-4708 10.1016/j.actamat.2005.07.002
  • Y ZHOU, J ZHANG, G FAN, X DING, J SUN, X REN, K OTSUKA. Origin of 2-stage R-phase transformation in low-temperature aged Ni-rich Ti-Ni alloys. Acta Materialia. 53 [20] (2005) 5365-5377 10.1016/j.actamat.2005.08.013
  • A.A. Kündig, M. Ohnuma, T. Ohkubo, K. Hono. Early crystallization stages in a Zr-Cu-Ni-Al-Ti metallic glass. Acta Materialia. 53 [7] (2005) 2091-2099 10.1016/j.actamat.2005.01.022
  • Xiaotong Wang, Nitin P. Padture, Hidehiko Tanaka, Angel L. Ortiz. Wear-resistant ultra-fine-grained ceramics. Acta Materialia. 53 [2] (2005) 271-277 10.1016/j.actamat.2004.09.020
  • J ZHANG, J WANG, H HARADA, Y KOIZUMI. The Effect of Lattice Misfit on the Dislocation Motion in Superalloys during High-Temperature Low-Stress Creep. Acta Materialia. 53 [17] (2005) 4623-4633 10.1016/j.actamat.2005.06.013
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