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Kategorie szczegółowe BISAC

Towards a Unified Fatigue Life Prediction Method for Marine Structures

ISBN-13: 9783642418303 / Angielski / Twarda / 2014 / 281 str.

Weicheng Cui; Xiaoping Huang; Fang Wang
Towards a Unified Fatigue Life Prediction Method for Marine Structures Weicheng Cui Xiaoping Huang Fang Wang 9783642418303 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Towards a Unified Fatigue Life Prediction Method for Marine Structures

ISBN-13: 9783642418303 / Angielski / Twarda / 2014 / 281 str.

Weicheng Cui; Xiaoping Huang; Fang Wang
cena 605,23 zł
(netto: 576,41 VAT:  5%)

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In order to apply the damage tolerance design philosophy to design marine structures, accurate prediction of fatigue crack growth under service conditions is required. Now, more and more people have realized that only a fatigue life prediction method based on fatigue crack propagation (FCP) theory has the potential to explain various fatigue phenomena observed. In this book, the issues leading towards the development of a unified fatigue life prediction (UFLP) method based on FCP theory are addressed. Based on the philosophy of the UFLP method, the current inconsistency between fatigue design and inspection of marine structures could be resolved.This book presents the state-of-the-art and recent advances, including those by the authors, in fatigue studies. It is designed to lead the future directions and to provide a useful tool in many practical applications. It is intended to address to engineers, naval architects, research staff, professionals and graduates engaged in fatigue prevention design and survey of marine structures, in fatigue studies of materials and structures, in experimental laboratory research, in planning the repair and maintenance of existing structures, and in rule development. The book is also an effective educational aid in naval architecture, marine, civil and mechanical engineering. Prof. Weicheng Cui is the Dean of Hadal Science and Technology Research Center of Shanghai Ocean University, China. Dr. Xiaoping Huang is an associate professor of School of Naval Architecture, Ocean and Civil Engineering of Shanghai Jiao Tong University, China. Dr. Fang Wang is an associate professor of Hadal Science and Technology Research Center of Shanghai Ocean University, China.

Kategorie:
Technologie
Kategorie BISAC:
Technology & Engineering > Hydraulics
Science > Mechanics - Solids
Technology & Engineering > Materials Science - Metals & Alloys
Wydawca:
Springer
Seria wydawnicza:
Advanced Topics in Science and Technology in China
Język:
Angielski
ISBN-13:
9783642418303
Rok wydania:
2014
Wydanie:
2014
Numer serii:
000354743
Ilość stron:
281
Wymiary:
23.5 x 15.5
Oprawa:
Twarda
Wolumenów:
01

Current understanding of fatigue mechanisms of metals.- Description of fatigue loading.- General procedure for a unified fatigue life prediction (UFLP) method for marine structures.- Technical problems to be resolved for developing a UFLP.- Some applications & demonstrations of UFLP.- Code development based on UFLP for marine structures.

In order to apply the damage tolerance design philosophy to design marine structures, accurate prediction of fatigue crack growth under service conditions is required. Now, more and more people have realized that only a fatigue life prediction method based on fatigue crack propagation (FCP) theory has the potential to explain various fatigue phenomena observed. In this book, the issues leading towards the development of a unified fatigue life prediction (UFLP) method based on FCP theory are addressed. Based on the philosophy of the UFLP method, the current inconsistency between fatigue design and inspection of marine structures could be resolved.

This book presents the state-of-the-art and recent advances, including those by the authors, in fatigue studies. It is designed to lead the future directions and to provide a useful tool in many practical applications. It is intended to address to engineers, naval architects, research staff, professionals and graduates engaged in fatigue prevention design and survey of marine structures, in fatigue studies of materials and structures, in experimental laboratory research, in planning the repair and maintenance of existing structures, and in rule development. The book is also an effective educational aid in naval architecture, marine, civil and mechanical engineering.

Prof. Weicheng Cui is the Dean of Hadal Science and Technology Research Center of Shanghai Ocean University, China. Dr. Xiaoping Huang is an associate professor of School of Naval Architecture, Ocean and Civil Engineering of Shanghai Jiao Tong University, China. Dr. Fang Wang is an associate professor of Hadal Science and Technology Research Center of Shanghai Ocean University, China.



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