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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07月15日

372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)
  • 大庭卓也, Shi Lei, HARA, Toru, 舩木準, 佐藤雅仁, 大庭卓也, Shi Lei, 舩木準, 佐藤雅仁. Precursor behavior in structure factors of AuCd alloy observed by different wavelength X-ray. Materials Science and Engineering A. [312] (2001) 244-247
  • SHIMONO, Masato, ONODERA, Hidehiro. Molecular Dynamics Study on Formation and Crystallization of Ti-Al Amorphous Alloys. Materials Science and Engineering A. 301 (2001) 515-519
  • Th. Zumkley, 郭俊清, TSAI, Anpang, 中嶋英雄, Th. Zumkley, J.Q. Guo, A.-P. Tsai, H. Nakajima. Diffusion in quasicrystalline Al-Ni-Co and Al-Pd-Mn. Materials Science and Engineering: A. 294-296 (2000) 702-705
  • SINGH, Alok, TSAI, Anpang, A.-P Tsai. The nature of lead-quasicrystal interface and its effect on the melting behavior of lead nanoparticles embedded in quasicrystall. Materials Science and Engineering: A. 294-296 (2000) 160-163 10.1016/s0921-5093(00)01232-6
  • KIM, Byung-Nam. Two-Dimensional Simulation of Grain Growth Based on an Atomic Jump bModel for Grain Boundary Migration . Materials Science and Engineering A. (1999)
  • KURODA, Seiji, P.Blazdell, P.Blazdell. Plasma Spraying of submicron Ceramic Supensions Using a continnons Jet Printer. Materials Science and Engineering,A. (1999)
  • 信木稔, 中村森彦, 中村森彦. Microstructure Evolution and Mechanical Properties of TiAl Base Alloys Containing Refractory Metals. Material Science and Engineering A (Mate. Sci. Eng). (1998)
  • 加藤雅彦, 笹野久興, 鈴木敏之, M Kato, H Sasano, T Suzuki. Control of Aluminum Concentration on Titanium Surface by Means of Chemical Transportation Technique. Materials Science and Engineering: A. 243 [1-2] (1998) 212-216 10.1016/s0921-5093(97)00803-4
  • 安田裕行, 平賀啓二. Cavity Damage Accumulation and Fracture in SiO2-Doped Zirconia during Superplastic Deformation. Materials Science and Engineering A. (1997) 343-346
  • 村上秀之, 山縣敏博, 原田広史, 山崎道夫. Ni基単結晶超合金の中温度領域(800℃)クリープ特性に及ぼすCoの影響. Materials Science and Engineering A. (1997) 54-58
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