Ultrasonic machining is one of the most widely used non-traditional machining processes for the machining of non-conductive, brittle materials including glass, ceramics, carbides, and graphite. Ultrasonic machining is an abrasive process, and material removal is purely mechanical. The process does not cause heat affected zone and any chemical or electrical alterations on work piece surface. It does not change the metallurgical, chemical or physical properties of the work pieces. Ultrasonic machine four different mechanisms are responsible for removal of material from the work surface. Material removed by direct hammering of abrasive particles on the work piece, Micro chipping by impact of free moving particles, Cavitations effect from the abrasive slurry, Chemical action associated with the fluid used. This study presents a new methodology for evaluation, ranking and selection of parameters of Ultrasonic machine by using (multiple attribute decision making) MADM approach.
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Ultrasonic machining is one of the most widely used non-traditional machining processes for the machining of non-conductive, brittle materials including glass, ceramics, carbides, and graphite. Ultrasonic machining is an abrasive process, and material removal is purely mechanical. The process does not cause heat affected zone and any chemical or electrical alterations on work piece surface. It does not change the metallurgical, chemical or physical properties of the work pieces. Ultrasonic machine four different mechanisms are responsible for removal of material from the work surface. Material removed by direct hammering of abrasive particles on the work piece, Micro chipping by impact of free moving particles, Cavitations effect from the abrasive slurry, Chemical action associated with the fluid used. This study presents a new methodology for evaluation, ranking and selection of parameters of Ultrasonic machine by using (multiple attribute decision making) MADM approach.
Er.Jagwinderjit Singh Gill is graduate from BBSBEC Fatehgarh Sahib(Pb.) and post-graduate from Thapar University, Patiala in Production & Industrial Engineering. His area of research is Advanced Machining Methods. Presently author is working as research fellow in Department of Mechanical Engineering, SGGSWU, Fatehgarh Sahib (Pb.)
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Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Gill Jagwinderjit SinghEr.Jagwinderjit Singh Gill is graduate from BBSBEC Fatehgarh Sahib(Pb.) and post-graduate from Thapar University, Patiala in Production & Industrial Engineering. His area of research is Advanced Machining Metho. N° de réf. du vendeur 158594231
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Taschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Ultrasonic machining is one of the most widely used non-traditional machining processes for the machining of non-conductive, brittle materials including glass, ceramics, carbides, and graphite. Ultrasonic machining is an abrasive process, and material removal is purely mechanical. The process does not cause heat affected zone and any chemical or electrical alterations on work piece surface. It does not change the metallurgical, chemical or physical properties of the work pieces. Ultrasonic machine four different mechanisms are responsible for removal of material from the work surface. Material removed by direct hammering of abrasive particles on the work piece, Micro chipping by impact of free moving particles, Cavitations effect from the abrasive slurry, Chemical action associated with the fluid used. This study presents a new methodology for evaluation, ranking and selection of parameters of Ultrasonic machine by using (multiple attribute decision making) MADM approach. 120 pp. Englisch. N° de réf. du vendeur 9783659370694
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Ultrasonic machining is one of the most widely used non-traditional machining processes for the machining of non-conductive, brittle materials including glass, ceramics, carbides, and graphite. Ultrasonic machining is an abrasive process, and material removal is purely mechanical. The process does not cause heat affected zone and any chemical or electrical alterations on work piece surface. It does not change the metallurgical, chemical or physical properties of the work pieces. Ultrasonic machine four different mechanisms are responsible for removal of material from the work surface. Material removed by direct hammering of abrasive particles on the work piece, Micro chipping by impact of free moving particles, Cavitations effect from the abrasive slurry, Chemical action associated with the fluid used. This study presents a new methodology for evaluation, ranking and selection of parameters of Ultrasonic machine by using (multiple attribute decision making) MADM approach. N° de réf. du vendeur 9783659370694
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Taschenbuch. Etat : Neu. This item is printed on demand - Print on Demand Titel. Neuware -Ultrasonic machining is one of the most widely used non-traditional machining processes for the machining of non-conductive, brittle materials including glass, ceramics, carbides, and graphite. Ultrasonic machining is an abrasive process, and material removal is purely mechanical. The process does not cause heat affected zone and any chemical or electrical alterations on work piece surface. It does not change the metallurgical, chemical or physical properties of the work pieces. Ultrasonic machine four different mechanisms are responsible for removal of material from the work surface. Material removed by direct hammering of abrasive particles on the work piece, Micro chipping by impact of free moving particles, Cavitations effect from the abrasive slurry, Chemical action associated with the fluid used. This study presents a new methodology for evaluation, ranking and selection of parameters of Ultrasonic machine by using (multiple attribute decision making) MADM approach.Books on Demand GmbH, Überseering 33, 22297 Hamburg 120 pp. Englisch. N° de réf. du vendeur 9783659370694
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