Laser Cladding of Metals:
Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of comple...
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Format: | Elektronisch E-Book |
Sprache: | English |
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Cham
Springer International Publishing
2021
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Ausgabe: | 1st edition |
Schlagworte: | |
Online-Zugang: | BTU01 FAB01 FFW01 FHD01 Volltext |
Zusammenfassung: | Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of complex components. The process main properties are the production of a perfect metallurgically bonded and fully dense coatings; the minimal heat affected zone and low dilution between the substrate and filler material resulting in functional coatings that perform at reduced thickness, so fewer layers are applied; fine, homogeneous microstructure resulting from the rapid solidification rate that promotes wear resistance of carbide coatings; near net-shape weld build-up requires little finishing effort; extended weldability of sensitive materials like carbon-rich steels or nickel-based superalloys that are difficult or even impossible to weld using conventional welding processes; post-weld heat treatment is often eliminated as the small heat affected zone minimizes component stress; excellent process stability and reproducibility because it is numerical controlled welding process. The typical applications are the dimensional restoration; the wear and corrosion protection; additive manufacturing. The wide range of materials that can be deposited and its suitability for treating small areas make laser cladding particularly appropriate to tailor surface properties to local service requirements and it opens up a new perspective for surface engineered materials. The main key aspect to be scientifically and technologically explored are the type of laser; the powders properties; the processing parameters; the consequent microstructural and mechanical properties of the processed material; the capability of fabrication of prototypes to rapid tooling and rapid manufacturing. Distills critical concepts, methods, and applications from leading full-length chapters, along with the authors's own deep understanding of the material taught, into a concise yet rigorous graduate and advanced undergraduate text; Reinforces concepts covered with detailed solutions to illuminating and challenging industrial applications; Discusses current and future applications of laser cladding in additive manufacturing |
Beschreibung: | Introduction -- Laser cladding processing fundamentals -- Laser cladding process modelling -- Laser cladding additive manufacturing -- Laser cladding aerospace applications -- Laser cladding of Ni-based superalloys -- Laser cladding of Al alloys -- Laser cladding of Ti alloys -- Laser cladding of Iron based alloys -- Laser cladding of metal matrix composites -- Laser cladding of Co alloys -- Laser cladding of metallic glasses -- Laser cladding of High entropy alloys |
Beschreibung: | 1 Online-Ressource (XI, 441 Seiten) Illustrationen |
ISBN: | 9783030531959 |
DOI: | 10.1007/978-3-030-53195-9 |
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520 | |a Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of complex components. | ||
520 | |a The process main properties are the production of a perfect metallurgically bonded and fully dense coatings; the minimal heat affected zone and low dilution between the substrate and filler material resulting in functional coatings that perform at reduced thickness, so fewer layers are applied; fine, homogeneous microstructure resulting from the rapid solidification rate that promotes wear resistance of carbide coatings; near net-shape weld build-up requires little finishing effort; extended weldability of sensitive materials like carbon-rich steels or nickel-based superalloys that are difficult or even impossible to weld using conventional welding processes; post-weld heat treatment is often eliminated as the small heat affected zone minimizes component stress; excellent process stability and reproducibility because it is numerical controlled welding process. The typical applications are the dimensional restoration; the wear and corrosion protection; additive manufacturing. | ||
520 | |a The wide range of materials that can be deposited and its suitability for treating small areas make laser cladding particularly appropriate to tailor surface properties to local service requirements and it opens up a new perspective for surface engineered materials. The main key aspect to be scientifically and technologically explored are the type of laser; the powders properties; the processing parameters; the consequent microstructural and mechanical properties of the processed material; the capability of fabrication of prototypes to rapid tooling and rapid manufacturing. Distills critical concepts, methods, and applications from leading full-length chapters, along with the authors's own deep understanding of the material taught, into a concise yet rigorous graduate and advanced undergraduate text; Reinforces concepts covered with detailed solutions to illuminating and challenging industrial applications; Discusses current and future applications of laser cladding in additive manufacturing | ||
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institution | BVB |
isbn | 9783030531959 |
language | English |
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spelling | Laser Cladding of Metals edited by Pasquale Cavaliere 1st edition Cham Springer International Publishing 2021 1 Online-Ressource (XI, 441 Seiten) Illustrationen txt rdacontent c rdamedia cr rdacarrier Introduction -- Laser cladding processing fundamentals -- Laser cladding process modelling -- Laser cladding additive manufacturing -- Laser cladding aerospace applications -- Laser cladding of Ni-based superalloys -- Laser cladding of Al alloys -- Laser cladding of Ti alloys -- Laser cladding of Iron based alloys -- Laser cladding of metal matrix composites -- Laser cladding of Co alloys -- Laser cladding of metallic glasses -- Laser cladding of High entropy alloys Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of complex components. The process main properties are the production of a perfect metallurgically bonded and fully dense coatings; the minimal heat affected zone and low dilution between the substrate and filler material resulting in functional coatings that perform at reduced thickness, so fewer layers are applied; fine, homogeneous microstructure resulting from the rapid solidification rate that promotes wear resistance of carbide coatings; near net-shape weld build-up requires little finishing effort; extended weldability of sensitive materials like carbon-rich steels or nickel-based superalloys that are difficult or even impossible to weld using conventional welding processes; post-weld heat treatment is often eliminated as the small heat affected zone minimizes component stress; excellent process stability and reproducibility because it is numerical controlled welding process. The typical applications are the dimensional restoration; the wear and corrosion protection; additive manufacturing. The wide range of materials that can be deposited and its suitability for treating small areas make laser cladding particularly appropriate to tailor surface properties to local service requirements and it opens up a new perspective for surface engineered materials. The main key aspect to be scientifically and technologically explored are the type of laser; the powders properties; the processing parameters; the consequent microstructural and mechanical properties of the processed material; the capability of fabrication of prototypes to rapid tooling and rapid manufacturing. Distills critical concepts, methods, and applications from leading full-length chapters, along with the authors's own deep understanding of the material taught, into a concise yet rigorous graduate and advanced undergraduate text; Reinforces concepts covered with detailed solutions to illuminating and challenging industrial applications; Discusses current and future applications of laser cladding in additive manufacturing Metals Manufactures Engineering-Materials (DE-588)4143413-4 Aufsatzsammlung gnd-content Cavaliere, Pasquale edt Erscheint auch als Druck-Ausgabe 9783030531942 Erscheint auch als Druck-Ausgabe 9783030531966 Erscheint auch als Druck-Ausgabe 9783030531973 https://doi.org/10.1007/978-3-030-53195-9 Verlag URL des Erstveröffentlichers Volltext |
spellingShingle | Laser Cladding of Metals Metals Manufactures Engineering-Materials |
subject_GND | (DE-588)4143413-4 |
title | Laser Cladding of Metals |
title_auth | Laser Cladding of Metals |
title_exact_search | Laser Cladding of Metals |
title_exact_search_txtP | Laser Cladding of Metals |
title_full | Laser Cladding of Metals edited by Pasquale Cavaliere |
title_fullStr | Laser Cladding of Metals edited by Pasquale Cavaliere |
title_full_unstemmed | Laser Cladding of Metals edited by Pasquale Cavaliere |
title_short | Laser Cladding of Metals |
title_sort | laser cladding of metals |
topic | Metals Manufactures Engineering-Materials |
topic_facet | Metals Manufactures Engineering-Materials Aufsatzsammlung |
url | https://doi.org/10.1007/978-3-030-53195-9 |
work_keys_str_mv | AT cavalierepasquale lasercladdingofmetals |