Yutaka Narukawa
Kobe Steel
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Featured researches published by Yutaka Narukawa.
Physica C-superconductivity and Its Applications | 1991
Yuichi Sawai; Kozo Ishizaki; Masasuke Takata; Yutaka Narukawa
Abstract The phase stability of a YBCO type superconductor has been studied for different total gas pressures, oxygen partial pressures and temperatures by using a oxygen-hot-isostatic-process. A total gas pressure versus temperature phase diagram at constant oxygen partial pressure (10 Wit), and an oxygen partial pressure versus temperature phase diagram at constant total gas pressure (200 MPa) were obtained. The dependence of the phase transformation temperature of the YBCO type superconductor on the oxygen partial pressure and the total gas pressure was examined. The phase stability analysis reveals for the first time that the transformation temperature of this YBCO type superconductor depends on both the total gas pressure and the oxygen partial pressure.
Archive | 1992
Yutaka Narukawa; Takao Fujikawa; Yoshihiko Sakashita; Takeshi Kanda
Progress in the development of O2-HIP equipment is described in this paper regarding safety and the achievement of a new high temperature O2-HIP apparatus.
Archive | 1992
Yuichi Sawai; Kozo Ishizaki; Yutaka Narukawa; Masasuke Takata
Phase stability of a YBCO type superconductor under variables of total gas pressure, oxygen partial pressure and temperature was studied by using oxygen hot isostatic process. A total gas pressure vs. temperature phase diagram at constant oxygen partial pressure (10MPa), and an oxygen partial pressure vs. temperature phase diagram at constant total gas pressure (200MPa) were obtained. Ago doped 124 phase was also synthesized by using 02 -HIP method. Doped Ago increased the critical temperature of the 124 phase from 75K to 77K.
MRS Proceedings | 1991
Yuichi Sawai; Kozo Ishizaki; Masasuke Takata; A. Kuzjukevics; Yutaka Narukawa
The oxygen partial pressure - temperature phase diagram of YBCO type superconductors reported before by us showed that the YBa 2 Cu 4 O x phase formation from Y 2 Ba 4 Cu 7 O z with CuO, as well as from YBa 2 Cu 3 O y , with CuO are oxidation reactions. The total gas pressure - temperature phase diagram shows that the YBa 2 Cu 4 O x , phase formation temperature from Y 2 Ba 4 Cu 7 O z with CuO increases with increasing the total gas pressure. On this phase boundary line, the fugacity of oxygen increases with increasing the total gas pressure even at constant oxygen partial pressure.
Archive | 2012
Shigeto Adachi; Masayoshi Matsumura; Yutaka Narukawa; Kazuo Takahashi
Archive | 1998
Takao Fujikawa; Yutaka Narukawa; Itaru Masuoka; Kohei Suzuki
Archive | 1998
Takao Fujikawa; Takahiro Yuki; Yoshihiko Sakashita; Yutaka Narukawa; Itaru Masuoka
Archive | 1998
Takao Fujikawa; Yutaka Narukawa; Itaru Masuoka; Takahiro Yuki; Yoshihiko Sakashita
Archive | 1999
Takao Fujikawa; Takahiko Ishii; Yutaka Narukawa; Makoto Kadoguchi
Archive | 2000
Takao Fujikawa; Yutaka Narukawa; Kohei Suzuki; Takuya Masui