Structural integrity and fatigue failure analysis : experimental, theoretical and numerical approaches / Grzegorz Lesiuk, Mieczyslaw Szata, Wojciech Blazejewski, Abílio M.P. de Jesus, José A.F.O. Correia, editors.
2022
TA409
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Title
Structural integrity and fatigue failure analysis : experimental, theoretical and numerical approaches / Grzegorz Lesiuk, Mieczyslaw Szata, Wojciech Blazejewski, Abílio M.P. de Jesus, José A.F.O. Correia, editors.
ISBN
9783030918477 (electronic bk.)
3030918475 (electronic bk.)
9783030918460 (print)
3030918467
3030918475 (electronic bk.)
9783030918460 (print)
3030918467
Published
Cham, Switzerland : Springer, 2022.
Language
English
Description
1 online resource (x, 369 pages) : illustrations (some color).
Item Number
10.1007/978-3-030-91847-7 doi
Call Number
TA409
Dewey Decimal Classification
620.1/126
Summary
This book contains full papers presented at the First Virtual Conference on Mechanical Fatigue (VCMF 2020), which was organised by the University of Porto (FEUP, Portugal), the Wroclaw University of Science and Technology (Poland), University of Electronic Science and Technology of China (China), Siberian Federal University (Russia), and the ESIS/TC12 Technical Committee (European Structural Integrity Society-ESIS), between 9 and 11 of September 2020. This conference was intended to be a forum of discussion of new research concepts, equipment, technology, materials and structures and other scientific advances within the field of mechanical fatigue and fracture. The first edition of the VCMF 2020 event has reached more than 60 participants from more than 20 nationalities demonstrating the vitality of this new event.
Note
Includes index.
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Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed May 11, 2022).
Added Author
Series
Structural integrity (Series) ; v. 25. 2522-5618
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Table of Contents
Study of viscoelastic properties of sandwich composites for manufacturing loudspeaker membranes
Durability Assessment of Multi-axial Strain Loads for Rural Road Condition in Time-Frequency Domain
Mode superposition techniques for a priori high stress detection and fatigue hotspot identification.
Durability Assessment of Multi-axial Strain Loads for Rural Road Condition in Time-Frequency Domain
Mode superposition techniques for a priori high stress detection and fatigue hotspot identification.