Addressing the growing interest in high-temperature technologies, this book covers technology related to energy, space, aerospace, electronics, and other areas. While some applications involve the use of materials at high temperatures, others require materials processed at high temperatures for use at room temperature. Reflecting the multidisciplinary nature of the subject, the chapters bring as broad a perspective to the field as possible. The book addresses the related science and engineering disciplines, including chemistry, material science, electrical and mechanical engineering, metallurgy, and physics.…mehr
Addressing the growing interest in high-temperature technologies, this book covers technology related to energy, space, aerospace, electronics, and other areas. While some applications involve the use of materials at high temperatures, others require materials processed at high temperatures for use at room temperature. Reflecting the multidisciplinary nature of the subject, the chapters bring as broad a perspective to the field as possible. The book addresses the related science and engineering disciplines, including chemistry, material science, electrical and mechanical engineering, metallurgy, and physics.
Dr. Yoseph Bar-Cohen is the Supervisor of the Electroactive Technologies Group at JPL, as well as a Senior Scientist there. He has (co) edited 10 books, co-authored over 390 publications, co-chaired 50 conferences, and has 36 registered patents. His books and other publications cover such topics as humanlike robots, biomimetics, nondestructive evaluation using ultrasonics and robotics and materials, etc. Business Week named him in 2003 as one of the five technology gurus who are "Pushing Tech's Boundaries." He is a NASA Fellow and Honors Award Winner, has two SPIE Lifetime Achievement Awards, and is the recipient of JPL's prestigious Magellan Award and many other honors and awards.
Inhaltsangabe
Introduction. High Temperature Materials Chemistry and Thermodynamics. Refractory Metals, Ceramics, and Composites for High Temperature Structural and Functional Applications. High Temperature Adhesives and Bonding. Oxidation of High Temperature Aerospace Materials. High Temperature Materials Processing. Characterization of High Temperature Materials. Nondestructive Evaluation and Health Monitoring of High Temperature Materials and Structures. High Temperature Motors. High Temperature Electromechanical Actuators. Thermoacoustic Piezoelectric Energy Harvesters. Shape Memory and Superelastic Alloys. Thermoelectric Materials and Generators: Research and Application. High Temperature Drilling Mechanisms. High Temperature Electronics. Ultra High Temperature Ultrasonic Sensor Design Challenges. High Temperature Materials and Mechanisms: Applications and Challenges. Index.
Introduction. High Temperature Materials Chemistry and Thermodynamics. Refractory Metals, Ceramics, and Composites for High Temperature Structural and Functional Applications. High Temperature Adhesives and Bonding. Oxidation of High Temperature Aerospace Materials. High Temperature Materials Processing. Characterization of High Temperature Materials. Nondestructive Evaluation and Health Monitoring of High Temperature Materials and Structures. High Temperature Motors. High Temperature Electromechanical Actuators. Thermoacoustic Piezoelectric Energy Harvesters. Shape Memory and Superelastic Alloys. Thermoelectric Materials and Generators: Research and Application. High Temperature Drilling Mechanisms. High Temperature Electronics. Ultra High Temperature Ultrasonic Sensor Design Challenges. High Temperature Materials and Mechanisms: Applications and Challenges. Index.
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