Fatigue and Fracture Mechanics of High Risk Parts: Application of LEFM & FMDM Theory
In the preliminary stage of designing new structural hardware that must perform a given mission in a fluctuating load environment, there are several factors the designers should consider. Trade studies for different design configurations should be performed and, based on strength and weight consider...
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Hauptverfasser: | , , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Boston, MA
Springer US
1997
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Schlagworte: | |
Online-Zugang: | BTU01 URL des Erstveröffentlichers |
Zusammenfassung: | In the preliminary stage of designing new structural hardware that must perform a given mission in a fluctuating load environment, there are several factors the designers should consider. Trade studies for different design configurations should be performed and, based on strength and weight considerations, among others, an optimum configuration selected. The selected design must be able to withstand the environment in question without failure. Therefore, a comprehen sive structural analysis that consists of static, dynamic, fatigue, and fracture is necessary to ensure the integrity of the structure. During the past few decades, fracture mechanics has become a necessary discipline for the solution of many structural problems. These problems include the prevention of failures resulting from preexisting cracks in the parent material, welds or that develop under cyclic loading environment during the life of the structure. The importance of fatigue and fracture in nuclear, pressure vessel, aircraft, and aerospace structural hardware cannot be overemphasized where safety is of utmost concern. This book is written for the designer and strength analyst, as well as for the material and process engineer who is concerned with the integrity of the structural hardware under load-varying environments in which fatigue and frac ture must be given special attention. The book is a result of years of both acade mic and industrial experiences that the principal author and co-authors have accumulated through their work with aircraft and aerospace structures |
Beschreibung: | 1 Online-Ressource (XVIII, 370 p) |
ISBN: | 9781461560098 |
DOI: | 10.1007/978-1-4615-6009-8 |
Internformat
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520 | |a In the preliminary stage of designing new structural hardware that must perform a given mission in a fluctuating load environment, there are several factors the designers should consider. Trade studies for different design configurations should be performed and, based on strength and weight considerations, among others, an optimum configuration selected. The selected design must be able to withstand the environment in question without failure. Therefore, a comprehen sive structural analysis that consists of static, dynamic, fatigue, and fracture is necessary to ensure the integrity of the structure. During the past few decades, fracture mechanics has become a necessary discipline for the solution of many structural problems. These problems include the prevention of failures resulting from preexisting cracks in the parent material, welds or that develop under cyclic loading environment during the life of the structure. The importance of fatigue and fracture in nuclear, pressure vessel, aircraft, and aerospace structural hardware cannot be overemphasized where safety is of utmost concern. This book is written for the designer and strength analyst, as well as for the material and process engineer who is concerned with the integrity of the structural hardware under load-varying environments in which fatigue and frac ture must be given special attention. The book is a result of years of both acade mic and industrial experiences that the principal author and co-authors have accumulated through their work with aircraft and aerospace structures | ||
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author | Farahmand, Bahram Bockrath, George Glassco, James |
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indexdate | 2024-07-10T08:10:55Z |
institution | BVB |
isbn | 9781461560098 |
language | English |
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physical | 1 Online-Ressource (XVIII, 370 p) |
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spelling | Farahmand, Bahram Verfasser aut Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory by Bahram Farahmand, George Bockrath, James Glassco Boston, MA Springer US 1997 1 Online-Ressource (XVIII, 370 p) txt rdacontent c rdamedia cr rdacarrier In the preliminary stage of designing new structural hardware that must perform a given mission in a fluctuating load environment, there are several factors the designers should consider. Trade studies for different design configurations should be performed and, based on strength and weight considerations, among others, an optimum configuration selected. The selected design must be able to withstand the environment in question without failure. Therefore, a comprehen sive structural analysis that consists of static, dynamic, fatigue, and fracture is necessary to ensure the integrity of the structure. During the past few decades, fracture mechanics has become a necessary discipline for the solution of many structural problems. These problems include the prevention of failures resulting from preexisting cracks in the parent material, welds or that develop under cyclic loading environment during the life of the structure. The importance of fatigue and fracture in nuclear, pressure vessel, aircraft, and aerospace structural hardware cannot be overemphasized where safety is of utmost concern. This book is written for the designer and strength analyst, as well as for the material and process engineer who is concerned with the integrity of the structural hardware under load-varying environments in which fatigue and frac ture must be given special attention. The book is a result of years of both acade mic and industrial experiences that the principal author and co-authors have accumulated through their work with aircraft and aerospace structures Engineering Mechanical Engineering Metallic Materials Offshore Engineering Civil Engineering Mechanical engineering Civil engineering Building construction Metals Werkstoff (DE-588)4065579-9 gnd rswk-swf Bruchmechanik (DE-588)4112837-0 gnd rswk-swf Werkstoff (DE-588)4065579-9 s Bruchmechanik (DE-588)4112837-0 s 1\p DE-604 Bockrath, George aut Glassco, James aut Erscheint auch als Druck-Ausgabe 9781461377535 https://doi.org/10.1007/978-1-4615-6009-8 Verlag URL des Erstveröffentlichers Volltext 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Farahmand, Bahram Bockrath, George Glassco, James Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory Engineering Mechanical Engineering Metallic Materials Offshore Engineering Civil Engineering Mechanical engineering Civil engineering Building construction Metals Werkstoff (DE-588)4065579-9 gnd Bruchmechanik (DE-588)4112837-0 gnd |
subject_GND | (DE-588)4065579-9 (DE-588)4112837-0 |
title | Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory |
title_auth | Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory |
title_exact_search | Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory |
title_full | Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory by Bahram Farahmand, George Bockrath, James Glassco |
title_fullStr | Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory by Bahram Farahmand, George Bockrath, James Glassco |
title_full_unstemmed | Fatigue and Fracture Mechanics of High Risk Parts Application of LEFM & FMDM Theory by Bahram Farahmand, George Bockrath, James Glassco |
title_short | Fatigue and Fracture Mechanics of High Risk Parts |
title_sort | fatigue and fracture mechanics of high risk parts application of lefm fmdm theory |
title_sub | Application of LEFM & FMDM Theory |
topic | Engineering Mechanical Engineering Metallic Materials Offshore Engineering Civil Engineering Mechanical engineering Civil engineering Building construction Metals Werkstoff (DE-588)4065579-9 gnd Bruchmechanik (DE-588)4112837-0 gnd |
topic_facet | Engineering Mechanical Engineering Metallic Materials Offshore Engineering Civil Engineering Mechanical engineering Civil engineering Building construction Metals Werkstoff Bruchmechanik |
url | https://doi.org/10.1007/978-1-4615-6009-8 |
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