The Experts below are selected from a list of 129 Experts worldwide ranked by ideXlab platform
Masafumi Sasaki - One of the best experts on this subject based on the ideXlab platform.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Journal of Engineering for Gas Turbines and Power, 1993Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components, and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation, and lifetime preprediction.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Volume 2: Aircraft Engine; Marine; Microturbines and Small Turbomachinery, 1991Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for over five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation and lifetime prediction.Copyright © 1991 by ASME
Yasushi Katano - One of the best experts on this subject based on the ideXlab platform.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Journal of Engineering for Gas Turbines and Power, 1993Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components, and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation, and lifetime preprediction.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Volume 2: Aircraft Engine; Marine; Microturbines and Small Turbomachinery, 1991Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for over five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation and lifetime prediction.Copyright © 1991 by ASME
Shojiro Okada - One of the best experts on this subject based on the ideXlab platform.
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Grinding Forces and Elastic Recovery in Ceramic Materials
Journal of the American Ceramic Society, 1994Co-Authors: Yoshihito Kondo, Akira Tsukuda, Takada Atsushi, Shojiro OkadaAbstract:Understanding grinding technology using a diamond grinding wheel is very important to achieve the dimensional accuracy of the final product in structural Application of Ceramics. Because Si3N4 is very difficult to grind, its grindability, which is estimated from the grinding force, is examined with regard to some of its physical properties. The difficult-to-grind nature of Si3N4 depends on its high elastic recovery energy.
Motohide Ando - One of the best experts on this subject based on the ideXlab platform.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Journal of Engineering for Gas Turbines and Power, 1993Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components, and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation, and lifetime preprediction.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Volume 2: Aircraft Engine; Marine; Microturbines and Small Turbomachinery, 1991Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for over five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation and lifetime prediction.Copyright © 1991 by ASME
Takane Itoh - One of the best experts on this subject based on the ideXlab platform.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Journal of Engineering for Gas Turbines and Power, 1993Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components, and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation, and lifetime preprediction.
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Application of Ceramics to Turbocharger Rotors for Passenger Cars
Volume 2: Aircraft Engine; Marine; Microturbines and Small Turbomachinery, 1991Co-Authors: Yasushi Katano, Motohide Ando, Takane Itoh, Masafumi SasakiAbstract:Nissan has been developing and marketing ceramic turbocharger rotors for over five years. This paper outlines the major theories and techniques used in ceramic fabrication, joining of ceramic and metal components and machining of Ceramics. It also presents a dynamic stress analysis using DYNA3D and describes techniques used in performing impact damage experiments, reliability evaluation and lifetime prediction.Copyright © 1991 by ASME