Copper based hybrid metal matrix composites reinforced with graphite and SiC by powder metallurgy route takes advantage of both graphite and SiC. Graphite helps in improving the wear resistance as graphite acts as a lubricating film on the contact surface and it's having a small coefficient of thermal expansion, but hardness decreases due to the softness of graphite. SiC helps in improving the hardness of the composite. Copper based hybrid metal matrix composites are used in many electrical contact applications like contact bushes and bearing materials. Cu based metal matrix composite is also used as a heat sink because of its low coefficient of thermal expansion and packaging of microelectronics compact. In our present investigation, attempts have been made to fabricate Copper–graphite-SiC hybrid metal matrix composites by powder metallurgy route. The main aim is to study the microstructural behaviors and improve the mechanical properties and wear resistance of composite with a minor loss of electrical conductivity.
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Copper based hybrid metal matrix composites reinforced with graphite and SiC by powder metallurgy route takes advantage of both graphite and SiC. Graphite helps in improving the wear resistance as graphite acts as a lubricating film on the contact surface and it's having a small coefficient of thermal expansion, but hardness decreases due to the softness of graphite. SiC helps in improving the hardness of the composite. Copper based hybrid metal matrix composites are used in many electrical contact applications like contact bushes and bearing materials. Cu based metal matrix composite is also used as a heat sink because of its low coefficient of thermal expansion and packaging of microelectronics compact. In our present investigation, attempts have been made to fabricate Copper–graphite-SiC hybrid metal matrix composites by powder metallurgy route. The main aim is to study the microstructural behaviors and improve the mechanical properties and wear resistance of composite with a minor loss of electrical conductivity.
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Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Meher ArabindaArabinda Meher is pursuing his doctoral research (Ph.D.) at Indian Institute of Technology Bhubaneswar. His research interest includes in-situ metal matrix composites and powder metallurgy. He received his M.Tech degre. N° de réf. du vendeur 294709553
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Taschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Copper based hybrid metal matrix composites reinforced with graphite and SiC by powder metallurgy route takes advantage of both graphite and SiC. Graphite helps in improving the wear resistance as graphite acts as a lubricating film on the contact surface and it's having a small coefficient of thermal expansion, but hardness decreases due to the softness of graphite. SiC helps in improving the hardness of the composite. Copper based hybrid metal matrix composites are used in many electrical contact applications like contact bushes and bearing materials. Cu based metal matrix composite is also used as a heat sink because of its low coefficient of thermal expansion and packaging of microelectronics compact. In our present investigation, attempts have been made to fabricate Copper-graphite-SiC hybrid metal matrix composites by powder metallurgy route. The main aim is to study the microstructural behaviors and improve the mechanical properties and wear resistance of composite with a minor loss of electrical conductivity. 72 pp. Englisch. N° de réf. du vendeur 9786200094537
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Copper based hybrid metal matrix composites reinforced with graphite and SiC by powder metallurgy route takes advantage of both graphite and SiC. Graphite helps in improving the wear resistance as graphite acts as a lubricating film on the contact surface and it's having a small coefficient of thermal expansion, but hardness decreases due to the softness of graphite. SiC helps in improving the hardness of the composite. Copper based hybrid metal matrix composites are used in many electrical contact applications like contact bushes and bearing materials. Cu based metal matrix composite is also used as a heat sink because of its low coefficient of thermal expansion and packaging of microelectronics compact. In our present investigation, attempts have been made to fabricate Copper-graphite-SiC hybrid metal matrix composites by powder metallurgy route. The main aim is to study the microstructural behaviors and improve the mechanical properties and wear resistance of composite with a minor loss of electrical conductivity. N° de réf. du vendeur 9786200094537
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Taschenbuch. Etat : Neu. Neuware -Copper based hybrid metal matrix composites reinforced with graphite and SiC by powder metallurgy route takes advantage of both graphite and SiC. Graphite helps in improving the wear resistance as graphite acts as a lubricating film on the contact surface and it's having a small coefficient of thermal expansion, but hardness decreases due to the softness of graphite. SiC helps in improving the hardness of the composite. Copper based hybrid metal matrix composites are used in many electrical contact applications like contact bushes and bearing materials. Cu based metal matrix composite is also used as a heat sink because of its low coefficient of thermal expansion and packaging of microelectronics compact. In our present investigation, attempts have been made to fabricate Copper¿graphite-SiC hybrid metal matrix composites by powder metallurgy route. The main aim is to study the microstructural behaviors and improve the mechanical properties and wear resistance of composite with a minor loss of electrical conductivity.Books on Demand GmbH, Überseering 33, 22297 Hamburg 72 pp. Englisch. N° de réf. du vendeur 9786200094537
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