Additive manufacturing for the aerospace industry
2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal...
Ausführliche Beschreibung
Autor*in: |
Froes, F. H. [herausgeberIn] Boyer, Rodney [herausgeberIn] |
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Format: |
E-Book |
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Sprache: |
Englisch |
Erschienen: |
Amsterdam Oxford Cambridge, MA: Elsevier ; 2019 © 2019 |
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Schlagwörter: | |
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Formangabe: |
Electronic books |
Anmerkung: |
Literaturangaben Includes bibliographical references and index |
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Umfang: |
1 Online-Ressource (xvi, 465 Seiten) ; Illustrationen, Diagramme |
Weitere Ausgabe: |
Erscheint auch als Druck-Ausgabe: Additive manufacturing for the aerospace industry - Amsterdam : Elsevier, 2019 |
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Links: | |
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ISBN: |
978-0-12-814063-5 |
DOI / URN: |
10.1016/C2017-0-00712-7 |
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Katalog-ID: |
1685483879 |
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245 | 1 | 0 | |a Additive manufacturing for the aerospace industry |c edited by Francis Froes (Light Metals Industry, Tacoma, WA, United States, Advanced Materials Industries, Tacoma, WA, United States), Rodney Boyer (RBTi Consulting, Bellevue, WA, United States School Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P.R. China) |
264 | 1 | |a Amsterdam |a Oxford |a Cambridge, MA |b Elsevier |c [2019] | |
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520 | |a 2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling | ||
520 | |a 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References | ||
520 | |a 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials | ||
520 | |a 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications | ||
520 | |a Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry | ||
520 | |a Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements | ||
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9780128140635 978-0-12-814063-5 10.1016/C2017-0-00712-7 doi (DE-627)1685483879 (DE-599)KEP045384614 (ELSEVIER)on1086610955 (EBP)045384614 DE-627 ger DE-627 rda eng XA-NL XA-GB XD-US TL545 TEC 009000 bisacsh TEC 009000 bisacsh 52.72 bkl Additive manufacturing for the aerospace industry edited by Francis Froes (Light Metals Industry, Tacoma, WA, United States, Advanced Materials Industries, Tacoma, WA, United States), Rodney Boyer (RBTi Consulting, Bellevue, WA, United States School Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P.R. China) Amsterdam Oxford Cambridge, MA Elsevier [2019] © 2019 1 Online-Ressource (xvi, 465 Seiten) Illustrationen, Diagramme Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Literaturangaben Includes bibliographical references and index 2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Three-dimensional printing Aerospace engineering Additive manufacturing Aerospace engineering Three-dimensional printing TECHNOLOGY & ENGINEERING / Engineering (General) Fabrication additive (CaQQLa)000316409 Aérospatiale (Ingénierie) (CaQQLa)201-0277933 Electronic books Froes, F. H. herausgeberin (DE-588)1067831355 (DE-627)819236322 (DE-576)426957504 edt Boyer, Rodney herausgeberin edt 9780128140628 Erscheint auch als Druck-Ausgabe Additive manufacturing for the aerospace industry Amsterdam : Elsevier, 2019 xvi, 465 Seiten (DE-627)1047476738 9780128140628 https://www.sciencedirect.com/science/book/9780128140628 X:ELSEVIER Verlag lizenzpflichtig https://doi.org/10.1016/C2017-0-00712-7 Resolving-System lizenzpflichtig Volltext GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-EBS ZDB-33-EGE 2019 ZDB-33-ESD GBV-33-Freedom 2023 GBV-33-EBS-HST BSZ-33-EBS-C1UB GBV_ILN_23 ISIL_DE-830 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_70 ISIL_DE-89 GBV_ILN_105 ISIL_DE-841 GBV_ILN_132 ISIL_DE-959 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2111 ISIL_DE-944 52.72 Fertigungsautomatisierung SEPA (DE-627)10642002X BO 045F 629.1028 23 01 0830 3588018271 ACQ Vervielfältigungen (z.B. 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spelling |
9780128140635 978-0-12-814063-5 10.1016/C2017-0-00712-7 doi (DE-627)1685483879 (DE-599)KEP045384614 (ELSEVIER)on1086610955 (EBP)045384614 DE-627 ger DE-627 rda eng XA-NL XA-GB XD-US TL545 TEC 009000 bisacsh TEC 009000 bisacsh 52.72 bkl Additive manufacturing for the aerospace industry edited by Francis Froes (Light Metals Industry, Tacoma, WA, United States, Advanced Materials Industries, Tacoma, WA, United States), Rodney Boyer (RBTi Consulting, Bellevue, WA, United States School Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P.R. China) Amsterdam Oxford Cambridge, MA Elsevier [2019] © 2019 1 Online-Ressource (xvi, 465 Seiten) Illustrationen, Diagramme Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Literaturangaben Includes bibliographical references and index 2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Three-dimensional printing Aerospace engineering Additive manufacturing Aerospace engineering Three-dimensional printing TECHNOLOGY & ENGINEERING / Engineering (General) Fabrication additive (CaQQLa)000316409 Aérospatiale (Ingénierie) (CaQQLa)201-0277933 Electronic books Froes, F. H. herausgeberin (DE-588)1067831355 (DE-627)819236322 (DE-576)426957504 edt Boyer, Rodney herausgeberin edt 9780128140628 Erscheint auch als Druck-Ausgabe Additive manufacturing for the aerospace industry Amsterdam : Elsevier, 2019 xvi, 465 Seiten (DE-627)1047476738 9780128140628 https://www.sciencedirect.com/science/book/9780128140628 X:ELSEVIER Verlag lizenzpflichtig https://doi.org/10.1016/C2017-0-00712-7 Resolving-System lizenzpflichtig Volltext GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-EBS ZDB-33-EGE 2019 ZDB-33-ESD GBV-33-Freedom 2023 GBV-33-EBS-HST BSZ-33-EBS-C1UB GBV_ILN_23 ISIL_DE-830 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_70 ISIL_DE-89 GBV_ILN_105 ISIL_DE-841 GBV_ILN_132 ISIL_DE-959 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2111 ISIL_DE-944 52.72 Fertigungsautomatisierung SEPA (DE-627)10642002X BO 045F 629.1028 23 01 0830 3588018271 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots i z 05-02-20 62 01 0028 3897368455 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 29-03-21 70 01 0089 4001333074 OLR-ESD-EBA2020 Campusweiter Zugriff (Universität Hannover). - Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 10-11-21 105 01 0841 407446523X OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 132 01 0959 4500001409 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Zeitlich begrenzte Lizenzierung k 13-03-24 185 01 3519 4514692298 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540279130 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520353181 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2027 01 DE-105 4009310634 00 --%%-- --%%-- --%%-- n Campuslizenz l01 30-11-21 2111 02 DE-944 4046036265 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 23 01 0830 Elsevier EBook https://www.sciencedirect.com/science/book/9780128140628 62 01 0028 https://www.sciencedirect.com/science/book/9780128140628 105 01 0841 https://www.sciencedirect.com/science/book/9780128140628 132 01 0959 Zugriff nur für Angehörige der Hochschule Osnabrück im Hochschulnetz https://www.sciencedirect.com/science/book/9780128140628 185 01 3519 https://www.sciencedirect.com/science/book/9780128140628 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128140628 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780128140628 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780128140628 132 01 0959 00 EBooks Elsevier Engineering 2027 01 DE-105 00 s ebook 23 01 0830 2019-02034, 2019-02035, 2019-02036, 2019-02037, 2019-02038 23 01 0830 ACQ 23 01 0830 olr-else 23 01 0830 olr-else2 62 01 0028 ACQ 70 01 0089 OLR-ESD-EBA2020 70 01 0089 ACQ 105 01 0841 OLR-ELV-TEST 132 01 0959 EBS Elsevier 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
allfields_unstemmed |
9780128140635 978-0-12-814063-5 10.1016/C2017-0-00712-7 doi (DE-627)1685483879 (DE-599)KEP045384614 (ELSEVIER)on1086610955 (EBP)045384614 DE-627 ger DE-627 rda eng XA-NL XA-GB XD-US TL545 TEC 009000 bisacsh TEC 009000 bisacsh 52.72 bkl Additive manufacturing for the aerospace industry edited by Francis Froes (Light Metals Industry, Tacoma, WA, United States, Advanced Materials Industries, Tacoma, WA, United States), Rodney Boyer (RBTi Consulting, Bellevue, WA, United States School Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P.R. China) Amsterdam Oxford Cambridge, MA Elsevier [2019] © 2019 1 Online-Ressource (xvi, 465 Seiten) Illustrationen, Diagramme Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Literaturangaben Includes bibliographical references and index 2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Three-dimensional printing Aerospace engineering Additive manufacturing Aerospace engineering Three-dimensional printing TECHNOLOGY & ENGINEERING / Engineering (General) Fabrication additive (CaQQLa)000316409 Aérospatiale (Ingénierie) (CaQQLa)201-0277933 Electronic books Froes, F. H. herausgeberin (DE-588)1067831355 (DE-627)819236322 (DE-576)426957504 edt Boyer, Rodney herausgeberin edt 9780128140628 Erscheint auch als Druck-Ausgabe Additive manufacturing for the aerospace industry Amsterdam : Elsevier, 2019 xvi, 465 Seiten (DE-627)1047476738 9780128140628 https://www.sciencedirect.com/science/book/9780128140628 X:ELSEVIER Verlag lizenzpflichtig https://doi.org/10.1016/C2017-0-00712-7 Resolving-System lizenzpflichtig Volltext GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-EBS ZDB-33-EGE 2019 ZDB-33-ESD GBV-33-Freedom 2023 GBV-33-EBS-HST BSZ-33-EBS-C1UB GBV_ILN_23 ISIL_DE-830 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_70 ISIL_DE-89 GBV_ILN_105 ISIL_DE-841 GBV_ILN_132 ISIL_DE-959 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2111 ISIL_DE-944 52.72 Fertigungsautomatisierung SEPA (DE-627)10642002X BO 045F 629.1028 23 01 0830 3588018271 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots i z 05-02-20 62 01 0028 3897368455 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 29-03-21 70 01 0089 4001333074 OLR-ESD-EBA2020 Campusweiter Zugriff (Universität Hannover). - Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 10-11-21 105 01 0841 407446523X OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 132 01 0959 4500001409 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Zeitlich begrenzte Lizenzierung k 13-03-24 185 01 3519 4514692298 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540279130 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2020 01 DE-Ch1 4520353181 00 --%%-- --%%-- n n Campuslizenz l01 03-05-24 2027 01 DE-105 4009310634 00 --%%-- --%%-- --%%-- n Campuslizenz l01 30-11-21 2111 02 DE-944 4046036265 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 27-01-22 23 01 0830 Elsevier EBook https://www.sciencedirect.com/science/book/9780128140628 62 01 0028 https://www.sciencedirect.com/science/book/9780128140628 105 01 0841 https://www.sciencedirect.com/science/book/9780128140628 132 01 0959 Zugriff nur für Angehörige der Hochschule Osnabrück im Hochschulnetz https://www.sciencedirect.com/science/book/9780128140628 185 01 3519 https://www.sciencedirect.com/science/book/9780128140628 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128140628 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780128140628 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780128140628 132 01 0959 00 EBooks Elsevier Engineering 2027 01 DE-105 00 s ebook 23 01 0830 2019-02034, 2019-02035, 2019-02036, 2019-02037, 2019-02038 23 01 0830 ACQ 23 01 0830 olr-else 23 01 0830 olr-else2 62 01 0028 ACQ 70 01 0089 OLR-ESD-EBA2020 70 01 0089 ACQ 105 01 0841 OLR-ELV-TEST 132 01 0959 EBS Elsevier 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
allfieldsGer |
9780128140635 978-0-12-814063-5 10.1016/C2017-0-00712-7 doi (DE-627)1685483879 (DE-599)KEP045384614 (ELSEVIER)on1086610955 (EBP)045384614 DE-627 ger DE-627 rda eng XA-NL XA-GB XD-US TL545 TEC 009000 bisacsh TEC 009000 bisacsh 52.72 bkl Additive manufacturing for the aerospace industry edited by Francis Froes (Light Metals Industry, Tacoma, WA, United States, Advanced Materials Industries, Tacoma, WA, United States), Rodney Boyer (RBTi Consulting, Bellevue, WA, United States School Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P.R. China) Amsterdam Oxford Cambridge, MA Elsevier [2019] © 2019 1 Online-Ressource (xvi, 465 Seiten) Illustrationen, Diagramme Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Literaturangaben Includes bibliographical references and index 2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Three-dimensional printing Aerospace engineering Additive manufacturing Aerospace engineering Three-dimensional printing TECHNOLOGY & ENGINEERING / Engineering (General) Fabrication additive (CaQQLa)000316409 Aérospatiale (Ingénierie) (CaQQLa)201-0277933 Electronic books Froes, F. H. herausgeberin (DE-588)1067831355 (DE-627)819236322 (DE-576)426957504 edt Boyer, Rodney herausgeberin edt 9780128140628 Erscheint auch als Druck-Ausgabe Additive manufacturing for the aerospace industry Amsterdam : Elsevier, 2019 xvi, 465 Seiten (DE-627)1047476738 9780128140628 https://www.sciencedirect.com/science/book/9780128140628 X:ELSEVIER Verlag lizenzpflichtig https://doi.org/10.1016/C2017-0-00712-7 Resolving-System lizenzpflichtig Volltext GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-EBS ZDB-33-EGE 2019 ZDB-33-ESD GBV-33-Freedom 2023 GBV-33-EBS-HST BSZ-33-EBS-C1UB GBV_ILN_23 ISIL_DE-830 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_70 ISIL_DE-89 GBV_ILN_105 ISIL_DE-841 GBV_ILN_132 ISIL_DE-959 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2111 ISIL_DE-944 52.72 Fertigungsautomatisierung SEPA (DE-627)10642002X BO 045F 629.1028 23 01 0830 3588018271 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots i z 05-02-20 62 01 0028 3897368455 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 29-03-21 70 01 0089 4001333074 OLR-ESD-EBA2020 Campusweiter Zugriff (Universität Hannover). - Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 10-11-21 105 01 0841 407446523X OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 132 01 0959 4500001409 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Zeitlich begrenzte Lizenzierung k 13-03-24 185 01 3519 4514692298 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540279130 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. 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Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128140628 2020 01 DE-Ch1 https://www.sciencedirect.com/science/book/9780128140628 2111 02 DE-944 https://www.sciencedirect.com/science/book/9780128140628 132 01 0959 00 EBooks Elsevier Engineering 2027 01 DE-105 00 s ebook 23 01 0830 2019-02034, 2019-02035, 2019-02036, 2019-02037, 2019-02038 23 01 0830 ACQ 23 01 0830 olr-else 23 01 0830 olr-else2 62 01 0028 ACQ 70 01 0089 OLR-ESD-EBA2020 70 01 0089 ACQ 105 01 0841 OLR-ELV-TEST 132 01 0959 EBS Elsevier 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
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9780128140635 978-0-12-814063-5 10.1016/C2017-0-00712-7 doi (DE-627)1685483879 (DE-599)KEP045384614 (ELSEVIER)on1086610955 (EBP)045384614 DE-627 ger DE-627 rda eng XA-NL XA-GB XD-US TL545 TEC 009000 bisacsh TEC 009000 bisacsh 52.72 bkl Additive manufacturing for the aerospace industry edited by Francis Froes (Light Metals Industry, Tacoma, WA, United States, Advanced Materials Industries, Tacoma, WA, United States), Rodney Boyer (RBTi Consulting, Bellevue, WA, United States School Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai, P.R. China) Amsterdam Oxford Cambridge, MA Elsevier [2019] © 2019 1 Online-Ressource (xvi, 465 Seiten) Illustrationen, Diagramme Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Literaturangaben Includes bibliographical references and index 2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Three-dimensional printing Aerospace engineering Additive manufacturing Aerospace engineering Three-dimensional printing TECHNOLOGY & ENGINEERING / Engineering (General) Fabrication additive (CaQQLa)000316409 Aérospatiale (Ingénierie) (CaQQLa)201-0277933 Electronic books Froes, F. H. herausgeberin (DE-588)1067831355 (DE-627)819236322 (DE-576)426957504 edt Boyer, Rodney herausgeberin edt 9780128140628 Erscheint auch als Druck-Ausgabe Additive manufacturing for the aerospace industry Amsterdam : Elsevier, 2019 xvi, 465 Seiten (DE-627)1047476738 9780128140628 https://www.sciencedirect.com/science/book/9780128140628 X:ELSEVIER Verlag lizenzpflichtig https://doi.org/10.1016/C2017-0-00712-7 Resolving-System lizenzpflichtig Volltext GBV-33-Freedom 2022 BSZ-33-EBS-HSAA GBV-33-EBS-MRI GBV-33-EBS-ZHB GBV-33-Freedom 2021 ZDB-33-EBS ZDB-33-EGE 2019 ZDB-33-ESD GBV-33-Freedom 2023 GBV-33-EBS-HST BSZ-33-EBS-C1UB GBV_ILN_23 ISIL_DE-830 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_70 ISIL_DE-89 GBV_ILN_105 ISIL_DE-841 GBV_ILN_132 ISIL_DE-959 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2020 ISIL_DE-Ch1 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2111 ISIL_DE-944 52.72 Fertigungsautomatisierung SEPA (DE-627)10642002X BO 045F 629.1028 23 01 0830 3588018271 ACQ Vervielfältigungen (z.B. 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Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 26-02-22 132 01 0959 4500001409 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Zeitlich begrenzte Lizenzierung k 13-03-24 185 01 3519 4514692298 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540279130 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. 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Additive manufacturing for the aerospace industry |
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2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Literaturangaben Includes bibliographical references and index |
abstractGer |
2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Literaturangaben Includes bibliographical references and index |
abstract_unstemmed |
2.1.1.1 Structural design2.1.1.2 Functional complexity; 2.1.1.3 Property requirements; 2.1.2 Manufacturing capabilities and benefits; 2.1.2.1 Part consolidation; 2.1.2.2 Material economy; 2.1.2.3 Small production runs and turnaround time; 2.2 Additive manufacturing technologies; 2.2.1 Additive metal technologies; 2.2.1.1 Directed energy deposition; 2.2.1.2 Powder bed fusion; 2.2.1.3 Other relevant additive metal technologies; 2.2.2 Additive nonmetal technologies; 2.2.2.1 Selective laser sintering; 2.2.2.2 Stereolithography; 2.2.2.3 PolyJet; 2.2.2.4 Fused deposition modeling 2.3 Additive manufacturing applications2.3.1 Direct digital manufacturing; 2.3.1.1 Direct metal part fabrication; 2.3.1.2 Fixtures and accessories; 2.3.2 Rapid tooling; 2.3.3 Rapid prototyping; 2.3.4 Repair; 2.3.4.1 Geometry restoration; 2.3.4.2 Structural integrity restoration; 2.4 Challenges and potential future applications; 2.4.1 Challenges; 2.4.1.1 Manufacturing limitations; 2.4.1.2 Postprocessing realities; 2.4.1.3 Specification and standard development; 2.4.2 Potential future applications; References 3 Qualification and certification of metal additive manufactured hardware for aerospace applications3.1 Introduction; 3.2 Special considerations for fracture-critical hardware; 3.3 Current qualification and certification state-of-the-art and gap analysis; 3.3.1 Standardization gaps related to qualification and certification; 3.3.2 Recent directions in qualification, certification, and quality control for additive manufacturing; 3.4 Industry qualification and certification approaches; 3.4.1 General Electric qualification and certification approach; 3.4.1.1 Qualification of additive materials 3.4.1.2 Certification of additive materials3.4.1.3 Quality control in additive materials; 3.4.2 Lockheed Martin qualification and certification approach; 3.5 Government agency approaches; 3.5.1 National aeronautics and space administration qualification and certification approach; 3.5.1.1 General qualification requirements; 3.5.1.2 Additive manufacturing part categories; 3.5.1.3 Integrated structural integrity rationale; 3.5.1.4 Influence of mission classification; 3.5.1.5 Tailoring approach; 3.5.1.6 Industry standards; 3.5.1.7 Process specifications; 3.5.1.8 Procurement specifications Additive Manufacturing for the Aerospace Industry explores the design, processing, metallurgy and applications of additive manufacturing (AM) within the aerospace industry. The book's editors have assembled an international team of experts who discuss recent developments and the future prospects of additive manufacturing. The work includes a review of the advantages of AM over conventionally subtractive fabrication, including cost considerations. Microstructures and mechanical properties are also presented, along with examples of components fabricated by AM. Readers will find information on a broad range of materials and processes used in additive manufacturing. It is ideal reading for those in academia, government labs, component fabricators, and research institutes, but will also appeal to all sectors of the aerospace industry Front Cover; Additive Manufacturing for the Aerospace Industry; Copyright Page; Contents; List of Contributors; 1 Introduction to aerospace materials requirements and the role of additive manufacturing; 1.1 Aerospace materials and their requirements; 1.2 Additive manufacturing; 1.3 Additive manufacturing fabrication of various types of materials; 1.4 Contents of this book; References; 2 Review of additive manufacturing technologies and applications in the aerospace industry; 2.1 Aerospace requirements and opportunities for additive manufacturing; 2.1.1 Design requirements Literaturangaben Includes bibliographical references and index |
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title_short |
Additive manufacturing for the aerospace industry |
url |
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