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Volume 9: Eighth International Conference on Creep and Fatigue at Elevated Temperatures | 2007

Creep-Fatigue Properties of Fe-Ni Base 0.08C-23Cr-45Ni-7W Alloy for Piping in 700°C A-USC Power Plants

Yasutaka Noguchi; Mitsuo Miyahara; Hirokazu Okada; Masaaki Igarashi; Kazuhiro Ogawa

Creep-fatigue properties of Fe-Ni base 0.08C-23Cr-45Ni-7W alloy (HR6W) are investigated at 700°C and compared with Ni base superalloy Alloy617 in order to examine applicability of these materials to piping in 700°C A-USC power plants. It is clarified that the fatigue lives of HR6W and Alloy617 are almost the same under PP (fast-fast) type strain waveform, but the life of HR6W is longer than that of Alloy617 under CP (slow-fast) type strain waveform. The crack initiation lives at the ligament parts of superheater outlet headers, which are made of HR6W and Alloy617, are predicted from the results of three-dimensional FE-analyses. The transient heat transfer analysis and the elastic-plastic-creep thermal stress analysis are conducted on several kinds of typical operating conditions to evaluate the inelastic strain caused by the thermal cycles during start-up and shut-down of power plants. The maximum steam temperature and pressure are selected as 700°C and 34.3MPa, respectively, and the maximum cycle time of operation is 1 year. On the basis of the analytical results, creep-fatigue and creep rupture properties of the materials, the crack initiation lives of the headers are predicted with the strain range partitioning method. Inelastic strain in the header of HR6W is larger than that of Alloy617, because HR6W has lower creep deformation resistance and a slightly higher thermal expansion coefficient. However the predicted life of the header of HR6W is longer than that of Alloy617, because HR6W is much superior to Alloy617 in creep ductility and creep-fatigue properties.Copyright


Archive | 2003

Eddy current speed reducer

Kenji Imanishi; Yasutaka Noguchi; Shinichiro Hiramatsu; Yasunori Tani; Hiroyuki Yamaguchi; Masahito Tasaka; Akira Saito; Mitsuo Miyahara


Archive | 2004

Eddy-current reduction gear

Akira Saito; Masahiro Tasaka; Yasutaka Noguchi; Kenji Imanishi


Procedia Engineering | 2011

Isothermal, Thermo-Mechanical and Bithermal Fatigue Life of Ni Base Alloy HR6W for Piping in 700 °C USC Power Plants

Yasutaka Noguchi; Hirokazu Okada; Hiroyuki Semba; Mitsuru Yoshizawa


Archive | 2009

Eddy current rail brake

Kenji Imanishi; Mitsuo Miyahara; Yasutaka Noguchi; Hiroshi Nogami; Akira Saito; Naoki Kitagawa; Hitoshi Taguchi; Shinnichirou Hiramatsu; Mitsuaki Watanabe


Journal of The Society of Materials Science, Japan | 2007

Effect of Grain Size on Creep-Fatigue Properties of 18Cr-9Ni-3Cu-Nb-N Steel under Uniaxial and Torsional Loading

Yasutaka Noguchi; Mitsuo Miyahara; Hirokazu Okada; Masaaki Igarashi


Archive | 2001

Eddy current braking apparatus

Yasunori Tani; Kenji Araki; Koichi Miura; Akira Saito; Yasutaka Noguchi; Kenji Imanishi; Keiichi Kawano


Archive | 2015

Eddy-current deceleration device

Hiroyuki Yamaguchi; 山口 博行; Kenji Imanishi; 今西 憲治; Yasutaka Noguchi; 野口 泰隆; Takashi Futaba; 敬士 二葉


Archive | 2012

Austenitic heat-resistant steel pipe

Hiromasa Hirata; 弘征 平田; Yasutaka Noguchi; 泰隆 野口; Yoshitaka Nishiyama; 佳孝 西山; Mitsuru Yoshizawa; 満 吉澤; Hidenori Ogawa; 英範 小川


Archive | 2010

Eddy current type reduction gear with power regeneration function

Keiji Futaba; Kenji Imanishi; Mitsuo Miyahara; Yutaka Nogami; Yasutaka Noguchi; Akira Saito; 敬士 二葉; 憲治 今西; 光雄 宮原; 裕 野上; 泰隆 野口; 晃 齋藤

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Hirokazu Okada

Sumitomo Metal Industries

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