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論文の分野はクラリベイト・アナリティクス社のESI分類を参考に分類し(Materials Science, Physics, Chemistry, Engineering, Biology)、ほか発表文献タイトル・抄録などから2006年以降刊行の論文検索を行うことができます。

最終更新時刻: 2021年12月08日

  • M. Nakamura, K. Tsuya. Effect of Phase Distribution on Mechanical Properties of Fe—Ni Heterogeneous Alloys. Powder Metallurgy. 22 [4] (1979) 179-186 10.1179/pom.1979.22.4.179
  • K. Tanaka, S. Matsuoka. Effect of back-stress on cyclic stress-strain behaviour of a quenched and tempered low alloy steel. Journal of Materials Science. 11 [4] (1976) 656-664 10.1007/bf01209451
  • Morihiko Nakamura, Kenki Hashimoto, Tokuzo Tsujimoto, 中村森彦, 橋本健紀, 辻本得蔵. Environmental effect on mechanical properties of TiAl base alloys. Journal of Materials Research. 8 [1] (1993) 68-77
  • Tachio Takano, Hideshi Sumiyoshi, Chitoshi Masuda. Algorithm for three-dimensional analysis of cleavage facet and its application for brittle fracture surface of steels.. ISIJ International. 30 [7] (1990) 552-558 10.2355/isijinternational.30.552
  • J.-L BOBET, C MASUDA, Y KAGAWA. Estimation of residual stress in SiC/Ti-15-3 composite and their relaxation during a fatigue test. J.Mat.Sci. 32 (1997) 6357 10.1023/a:1018665901020
  • T.Shikama, H.Shinno, M.Fukutomi, M.fujitsuka, M.Okada. Thin Solid films. Thin Solid Films. 101 [233] (1983)
  • S.Q Guo, Y Kagawa, Y Tanaka, C Masuda. Microstructure and role of outermost coating for tensile strength of SiC fiber. Acta Materialia. 46 [14] (1998) 4941-4954 10.1016/s1359-6454(98)00181-5
  • Chitoshi Masuda, Yosihisa Tanaka, Motohiro Yamamoto, Minoru Fukazawa, 田中, 田中. Fatigue crack propagation mechanism for SiC whisker or SiC particle reinforced aluminum matrix composites. Advanced Composite Materials. 3 [4] (1994) 319-339 10.1163/156855194x00204
  • KUNIHIKO IWASAKI. IMPROVEMENT OF FFT SPECTRA BY SYNCHRONIZATION OF INPUT SIGNAL AT FIRST AND LAST ZERO-CROSSING POINTS. Nondestructive Testing and Evaluation. 7 [1-6] (1992) 233-243 10.1080/10589759208953002
  • Y. Jin, K. Adachi, T. Takeuchi, H.G. Suzuki. Correlation between the electrical conductivity and aging treatment for a Cu-15 wt% Cr alloy composite formed in-situ. Materials Letters. 32 [5-6] (1997) 307-311
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