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ASME 1996 International Gas Turbine and Aeroengine Congress and Exhibition | 1996

Development of Ceramic Gas Turbine Components for the CGT301 Engine

Mitsuru Hattori; Tsutomu Yamamoto; Keiichiro Watanabe; Masaaki Masuda

NGK Insulators, Ltd. (NGK) has undertaken the research and development on the fabrication processes of high-heat-resistant ceramic components for the CGT301, which is a 300kW recuperative industrial ceramic gas turbine engine. This program is under the New Sunshine Project, funded by the Ministry of International Trade and Industry (MITI), and has been guided by the Agency of Industrial Science & Technology (AIST) since 1988. The New Energy and Industrial Technology Development Organization (NEDO) is the main contractor.The fabrication techniques for ceramic components, such as turbine blades, turbine nozzles, combustor liners, gas-path parts, and heat exchanger elements, for the 1,200°C engine were developed by 1993. Development for the 1,350°C engine has been underway since 1994. The baseline conditions for fabricating of all ceramic components have been established.This paper reports on the development of ceramic gas turbine components, and the improved accuracies of their shapes as well as improved reliability from the results of the interim appraisal conducted in 1994.Copyright


Volume 1: Aircraft Engine; Marine; Turbomachinery; Microturbines and Small Turbomachinery | 1993

Development of Ceramic Gas Turbine Components for CGT301 in Moonlight Project

Mitsuru Hattori; Masaaki Masuda; Tadao Ozawa

Development of ceramic components for a 300kW recuperative single-shaft ceramic gas turbine, a program in the Moonlight Projects, is being conducted by the New Energy and Industrial Organization (NEDO). Along with its program, NGK has made technical efforts in cooperation with Ishikawajima-Harima Heavy Industries Co., Ltd. (IHI) since 1988.In this paper, the strength of the NGK silicon nitride turbine blade is discussed. Bending strength was checked with specimens cut from the turbine blades, and specifically, cold spin tests were conducted with ceramic turbine blades having three configurations.The silicon nitride was found promising for ceramic gas turbine applications, however, there are some issues to be solved prior to prototype engine tests.Copyright


Archive | 2001

Halogen gas plasma-resistive members and method for producing the same, laminates, and corrosion-resistant members

Hirotake Yamada; Yuji Katsuda; Tsuneaki Ohashi; Masaaki Masuda; Masashi Harada; Hiroyuki Iwasaki; Shigenori Ito


Journal of the American Ceramic Society | 1990

Foreign Object Damage Resistance of Silicon Nitride and Silicon Carbide

Hideyoshi Tsuruta; Masaaki Masuda; Takao Soma; Minoru Matsui


Archive | 2001

Halogen gas plasma resistant member and production method therefor

Masashi Harada; Shigenori Ito; Yuji Katsuta; Masaaki Masuda; Haruaki Ohashi; Hirotake Yamada; 重則 伊藤; 祐司 勝田; 原田 昌史; 玄章 大橋; 裕丈 山田; 昌明 桝田


Journal of the American Ceramic Society | 1989

Cation Interdiffusion in Polycrystalline Cubic C-Type Yttria–Zirconia–Hafnia Solid Solutions

Yoshio Sakka; Yasumichi Oishi; Ken Ando; Masaaki Masuda


Journal of the American Ceramic Society | 2005

Effects of Samarium Oxide Addition on the Phase Composition, Microstructure, and Electrical Resistivity of Aluminum Nitride Ceramics

Jun Yoshikawa; Yuji Katsuda; Naohito Yamada; Chikashi Ihara; Masaaki Masuda; Hiroaki Sakai


Archive | 2001

Material of low volume resistivity, an aluminum nitride sintered body and a member used for the production of semiconductors

Yuji Katsuda; Jun Yoshikawa; Masaaki Masuda; Chikashi Ihara


Archive | 2000

Aluminum nitride sintered bodies and semiconductor-producing members including same

Yuji Katsuda; Masaaki Masuda


Archive | 2001

Halogen gas plasma-resistive member and method for producing the same

Hirotake Yamada; Yuji Katsuda; Tsuneaki Ohashi; Masaaki Masuda; Masashi Harada; Hiroyuki Iwasaki; Shigenori Ito

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Junichi Suzuki

Sapporo Medical University

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Tetsuya Kameyama

National Institute of Advanced Industrial Science and Technology

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Yoshio Sakka

National Institute for Materials Science

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