Super alloys are introduced in these days in industrial environment for better strength applications. It is widely understood that aerospace materials such as titanium, nickel based alloys and high strength steels are difficult to machine in spite of their material properties. Previous research in concerned area indicates that an alternative pathway to achieve greater tool life is thermally assisted machining (TAM). This approach is seemingly contradictory to the traditional method and instead relies on introducing heat from an external source to reduce the work piece material’s strength and hardness, thereby reducing cutting forces and making the material easier to machine. The objective of present work is to investigate the role of thermal assisted machining; especially plasma assisted machining on various parameters at optimal speed, feed and depth of cut, and to compare the effectiveness of dry machining with thermal assisted machining on EN-19 steel. The results reveal the significantly enhanced output values when compared to dry machining in terms of surface roughness, Micro-hardness, and chip reduction coefficient.
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Dr. Gurbhinder Singh has a vast experience in teaching of UG and PG level students of Mechanical Engineering in various institutions. Presently he is working as Professor and Dean Engineering in Guru Kashi University, Talwandi Sabo. He has published several research papers and Books in his concerned field.
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Taschenbuch. Zustand: Neu. Neuware - Super alloys are introduced in these days in industrial environment for better strength applications. It is widely understood that aerospace materials such as titanium, nickel based alloys and high strength steels are difficult to machine in spite of their material properties. Previous research in concerned area indicates that an alternative pathway to achieve greater tool life is thermally assisted machining (TAM). This approach is seemingly contradictory to the traditional method and instead relies on introducing heat from an external source to reduce the work piece material's strength and hardness, thereby reducing cutting forces and making the material easier to machine. The objective of present work is to investigate the role of thermal assisted machining; especially plasma assisted machining on various parameters at optimal speed, feed and depth of cut, and to compare the effectiveness of dry machining with thermal assisted machining on EN-19 steel. The results reveal the significantly enhanced output values when compared to dry machining in terms of surface roughness, Micro-hardness, and chip reduction coefficient. Artikel-Nr. 9786202012904
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Taschenbuch. Zustand: Neu. Effects of Thermal Assisted Machining Process on EN 19 Steel | Gurbhinder Singh (u. a.) | Taschenbuch | 52 S. | Englisch | 2017 | LAP LAMBERT Academic Publishing | EAN 9786202012904 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. Artikel-Nr. 109629916
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Taschenbuch. Zustand: Neu. Neuware -Super alloys are introduced in these days in industrial environment for better strength applications. It is widely understood that aerospace materials such as titanium, nickel based alloys and high strength steels are difficult to machine in spite of their material properties. Previous research in concerned area indicates that an alternative pathway to achieve greater tool life is thermally assisted machining (TAM). This approach is seemingly contradictory to the traditional method and instead relies on introducing heat from an external source to reduce the work piece material¿s strength and hardness, thereby reducing cutting forces and making the material easier to machine. The objective of present work is to investigate the role of thermal assisted machining; especially plasma assisted machining on various parameters at optimal speed, feed and depth of cut, and to compare the effectiveness of dry machining with thermal assisted machining on EN-19 steel. The results reveal the significantly enhanced output values when compared to dry machining in terms of surface roughness, Micro-hardness, and chip reduction coefficient. 52 pp. Englisch. Artikel-Nr. 9786202012904
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