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ISBN 10: 396067211X ISBN 13: 9783960672111
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Published by Anchor Academic Publishing 2018-01, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
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Published by Anchor Academic Publishing Jan 2018, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
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Add to basketTaschenbuch. Condition: Neu. Neuware -The need for low weight and high performance structural materials has revolutionized the technology and has led to the emergence of new processes and methodologies. Friction stir processing (FSP), based on the principle of friction stir welding, is an emerging solid state metal working process. This technique causes intense plastic deformation and high strain rates in the processed material, resulting in precise control of the microstructure through material mixing and densification. FSP process has been successfully used for achieving significant grain refinement and enhancement of surface properties. The present work focuses on the study of behavior of Aluminium cast alloy (Al-6063) processed by the friction stir processing technique. Samples of FSP-ed aluminium were examined and their microstructures, microhardness, Rockwell hardnesss and impact strength were studied and compared with base metal Al-6063. Hardness tester was employed to evaluate the interfacial bonding between the particles and matrix by indenting the hardness with the constant load and constant time. Impact test was employed to know the Impact Strength of samples against the Impact of Hammer.Diplomica Verlag, Hermannstal 119k, 22119 Hamburg 76 pp. Englisch.
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Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
Language: English
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Add to basketHardback or Cased Book. Condition: New. Microstructure, Characterization and Mechanical Properties of Coal and Coal-Like Materials 1.55. Book.
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ISBN 10: 396067211X ISBN 13: 9783960672111
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Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
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Add to basketTaschenbuch. Condition: Neu. Characterization of microstructure and mechanical properties of AL6063 using FSP Multipass | Ripandeep Singh | Taschenbuch | 76 S. | Englisch | 2018 | Anchor Academic Publishing | EAN 9783960672111 | Verantwortliche Person für die EU: BoD - Books on Demand, In de Tarpen 42, 22848 Norderstedt, info[at]bod[dot]de | Anbieter: preigu.
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Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
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Published by Anchor Academic Publishing Jan 2018, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
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Add to basketTaschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The need for low weight and high performance structural materials has revolutionized the technology and has led to the emergence of new processes and methodologies. Friction stir processing (FSP), based on the principle of friction stir welding, is an emerging solid state metal working process. This technique causes intense plastic deformation and high strain rates in the processed material, resulting in precise control of the microstructure through material mixing and densification. FSP process has been successfully used for achieving significant grain refinement and enhancement of surface properties.The present work focuses on the study of behavior of Aluminium cast alloy (Al-6063) processed by the friction stir processing technique. Samples of FSP-ed aluminium were examined and their microstructures, microhardness, Rockwell hardnesss and impact strength were studied and compared with base metal Al-6063. Hardness tester was employed to evaluate the interfacial bonding between the particles and matrix by indenting the hardness with the constant load and constant time. Impact test was employed to know the Impact Strength of samples against the Impact of Hammer. 76 pp. Englisch.
Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
Language: English
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Add to basketTaschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The need for low weight and high performance structural materials has revolutionized the technology and has led to the emergence of new processes and methodologies. Friction stir processing (FSP), based on the principle of friction stir welding, is an emerging solid state metal working process. This technique causes intense plastic deformation and high strain rates in the processed material, resulting in precise control of the microstructure through material mixing and densification. FSP process has been successfully used for achieving significant grain refinement and enhancement of surface properties.The present work focuses on the study of behavior of Aluminium cast alloy (Al-6063) processed by the friction stir processing technique. Samples of FSP-ed aluminium were examined and their microstructures, microhardness, Rockwell hardnesss and impact strength were studied and compared with base metal Al-6063. Hardness tester was employed to evaluate the interfacial bonding between the particles and matrix by indenting the hardness with the constant load and constant time. Impact test was employed to know the Impact Strength of samples against the Impact of Hammer.
Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
Language: English
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Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
Language: English
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Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
Language: English
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Add to basketCondition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. The need for low weight and high performance structural materials has revolutionized the technology and has led to the emergence of new processes and methodologies. Friction stir processing (FSP), based on the principle of friction stir welding, is an emerg.
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Add to basketBuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - In view of the general trend that the development of the global energy industry is oriented toward green, low-carbon, and efficient utilization, scientific research teams in various fields dominated by the coal industry have conducted much research on coal and coal-like materials by borrowing the technologies and concepts of modern materials science and rock mass mechanics, hoping to explore new directions for the high value-added utilization of structural coal resources and the development of new coal-like materials. On behalf of Materials, we invited you to contribute an original research article to a Special Issue on the microstructure, characterization, and mechanical properties of coal and coal-like materials. This Special Issue aimed to showcase the latest scientific and technological achievements and cutting-edge test technologies in the study of coal and coal-like materials, with exploration of their structural change characteristics and mechanical properties under various influencing factors. Hot topics to be covered include: Analysis of mechanical properties of coal and coal-like materials;Multiscale characterization of coal and coal-like materials;Development and utilization of coal resources with high added value;Void structure and seepage characteristics of coal and coal-like materials;Establishment of constitutive relationships.
Published by Anchor Academic Publishing, 2018
ISBN 10: 396067211X ISBN 13: 9783960672111
Language: English
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Add to basketTaschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Poly(methyl methacrylate) has got wide variety of applications. However, its low glass transition temperature ~100°C, limits its applications in optical-electronic industries because it undergoes distortion at high temperature. Copolymerization of methyl methacrylate with itaconimides has shown to increase the thermal stability and softening temperature. The nature and position of the substituent in N-arylsubstituted itaconimides affects the glass transition temperature and other useful properties like molecular weight and thermal stability of copolymers. Though the N-substituted itaconamic acids are the intermediate products during the synthesis of N-substituted itaconimides, not enough work has been done on their copolymerization with MMA. Hence there is a need to investigate systematically the copolymerization behavior of N-arylsubstituted itaconamic acids and corresponding itaconimides with MMA and its effect on the properties of copolymers. Due to the obvious significance of such studies from academic as well as industrial point of view, it was considered of interest to study systematically the copolymerization behavior of MMA with N-aryl itaconamic acids /or itaconimides.