Suspension Plasma Sprayed Nano-Composite Thermal Barrier Coatings: Formation and Roles of the Amorphous Phases in Alumina-Stabilized Zirconia Ceramic Nano-Composites

 
9783844381702: Suspension Plasma Sprayed Nano-Composite Thermal Barrier Coatings: Formation and Roles of the Amorphous Phases in Alumina-Stabilized Zirconia Ceramic Nano-Composites
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Thermal barrier coatings have been used for the last half century to protect parts in high temperature service from premature damage. Thermal barrier coatings are mostly produced by thermal spray techniques, especially plasma spray processes. They are widely used in the aerospace and automotive industries and in power plants, applications in which there is an ever-increasing demand for further improvement of functionality and durability. In the field of material design, use of composite coatings rather than monolithic material, and nano-structure instead of conventional grain sizes, are among the solutions most often considered. Suspension plasma spray is an innovative process for production of nano-structured thermal barrier coatings. This research was directed toward a superior thermal barrier coating using suspension plasma spray deposition of the alumina-yttria stabilized zirconia composite material with nano-crystalline structure. Crystallization of the amorphous phase is introduced as a new route toward nano-crystallinity in ceramics, as was previously applied in the metals and alloys.

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PhD. Mechanical Engineering, Concordia University, QC, Canada MSc. Materials Design, University of Science and Technology, Tehran, Iran BEng. Materials Engineering, Shiraz University, Iran Senior Engineer in oil & gas industries as welding & material consultant & quality coordinator Presently, post-doctoral research, University of Toronto, Canada

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Book Description Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Formation and Roles of the Amorphous Phases in Alumina-Stabilized Zirconia Ceramic Nano-Composites | Thermal barrier coatings have been used for the last half century to protect parts in high temperature service from premature damage. Thermal barrier coatings are mostly produced by thermal spray techniques, especially plasma spray processes. They are widely used in the aerospace and automotive industries and in power plants, applications in which there is an ever-increasing demand for further improvement of functionality and durability. In the field of material design, use of composite coatings rather than monolithic material, and nano-structure instead of conventional grain sizes, are among the solutions most often considered. Suspension plasma spray is an innovative process for production of nano-structured thermal barrier coatings. This research was directed toward a superior thermal barrier coating using suspension plasma spray deposition of the alumina-yttria stabilized zirconia composite material with nano-crystalline structure. Crystallization of the amorphous phase is introduced as a new route toward nano-crystallinity in ceramics, as was previously applied in the metals and alloys. | Format: Paperback | Language/Sprache: english | 240 gr | 220x150x9 mm | 168 pp. Seller Inventory # K9783844381702

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Book Description LAP Lambert Acad. Publ. Jun 2011, 2011. Taschenbuch. Condition: Neu. Neuware - Thermal barrier coatings have been used for the last half century to protect parts in high temperature service from premature damage. Thermal barrier coatings are mostly produced by thermal spray techniques, especially plasma spray processes. They are widely used in the aerospace and automotive industries and in power plants, applications in which there is an ever-increasing demand for further improvement of functionality and durability. In the field of material design, use of composite coatings rather than monolithic material, and nano-structure instead of conventional grain sizes, are among the solutions most often considered. Suspension plasma spray is an innovative process for production of nano-structured thermal barrier coatings. This research was directed toward a superior thermal barrier coating using suspension plasma spray deposition of the alumina-yttria stabilized zirconia composite material with nano-crystalline structure. Crystallization of the amorphous phase is introduced as a new route toward nano-crystallinity in ceramics, as was previously applied in the metals and alloys. 168 pp. Englisch. Seller Inventory # 9783844381702

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Book Description LAP Lambert Acad. Publ. Jun 2011, 2011. Taschenbuch. Condition: Neu. Neuware - Thermal barrier coatings have been used for the last half century to protect parts in high temperature service from premature damage. Thermal barrier coatings are mostly produced by thermal spray techniques, especially plasma spray processes. They are widely used in the aerospace and automotive industries and in power plants, applications in which there is an ever-increasing demand for further improvement of functionality and durability. In the field of material design, use of composite coatings rather than monolithic material, and nano-structure instead of conventional grain sizes, are among the solutions most often considered. Suspension plasma spray is an innovative process for production of nano-structured thermal barrier coatings. This research was directed toward a superior thermal barrier coating using suspension plasma spray deposition of the alumina-yttria stabilized zirconia composite material with nano-crystalline structure. Crystallization of the amorphous phase is introduced as a new route toward nano-crystallinity in ceramics, as was previously applied in the metals and alloys. 168 pp. Englisch. Seller Inventory # 9783844381702

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Book Description LAP Lambert Acad. Publ. Jun 2011, 2011. Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Neuware - Thermal barrier coatings have been used for the last half century to protect parts in high temperature service from premature damage. Thermal barrier coatings are mostly produced by thermal spray techniques, especially plasma spray processes. They are widely used in the aerospace and automotive industries and in power plants, applications in which there is an ever-increasing demand for further improvement of functionality and durability. In the field of material design, use of composite coatings rather than monolithic material, and nano-structure instead of conventional grain sizes, are among the solutions most often considered. Suspension plasma spray is an innovative process for production of nano-structured thermal barrier coatings. This research was directed toward a superior thermal barrier coating using suspension plasma spray deposition of the alumina-yttria stabilized zirconia composite material with nano-crystalline structure. Crystallization of the amorphous phase is introduced as a new route toward nano-crystallinity in ceramics, as was previously applied in the metals and alloys. 168 pp. Englisch. Seller Inventory # 9783844381702

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Book Description LAP Lambert Academic Publishing, Germany, 2011. Paperback. Condition: New. Language: English . Brand New Book. Thermal barrier coatings have been used for the last half century to protect parts in high temperature service from premature damage. Thermal barrier coatings are mostly produced by thermal spray techniques, especially plasma spray processes. They are widely used in the aerospace and automotive industries and in power plants, applications in which there is an ever-increasing demand for further improvement of functionality and durability. In the field of material design, use of composite coatings rather than monolithic material, and nano-structure instead of conventional grain sizes, are among the solutions most often considered. Suspension plasma spray is an innovative process for production of nano-structured thermal barrier coatings. This research was directed toward a superior thermal barrier coating using suspension plasma spray deposition of the alumina-yttria stabilized zirconia composite material with nano-crystalline structure. Crystallization of the amorphous phase is introduced as a new route toward nano-crystallinity in ceramics, as was previously applied in the metals and alloys. Seller Inventory # KNV9783844381702

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