Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines

S.260-267 Bolted connections in support structures for offshore wind turbines need to be thoroughly designed against fatigue damage. However, experimental validation of applicable fatigue curves for bolts with large diameters is limited. In this paper appropriate design methods are described. Result...

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Main Authors: Schaumann, P., Eichstädt, R.
Format: Conference Object
Language:English
Published: 2015
Subjects:
Online Access:https://publica.fraunhofer.de/handle/publica/407943
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spelling ftfrauneprints:oai:publica.fraunhofer.de:publica/407943 2023-05-15T14:23:35+02:00 Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines Schaumann, P. Eichstädt, R. 2015 https://publica.fraunhofer.de/handle/publica/407943 en eng International Offshore and Polar Engineering Conference (ISOPE) 2015 25th International Ocean and Polar Engineering Conference - Ocean, arctic, energy : Gas hydrates and ocean mining, ISOPE 2015. Proceedings https://publica.fraunhofer.de/handle/publica/407943 conference paper 2015 ftfrauneprints 2022-11-01T19:54:40Z S.260-267 Bolted connections in support structures for offshore wind turbines need to be thoroughly designed against fatigue damage. However, experimental validation of applicable fatigue curves for bolts with large diameters is limited. In this paper appropriate design methods are described. Results of experimental fatigue tests on high-strength bolts of size M36 are presented, including a quantification of the effect of different zinc coatings and the validation of relevant design S-N curves. The experimental results are further used for validation and discussion of first calculation results with a numerical fatigue calculation method, based on the notch-strain approach. Conference Object Arctic Publikationsdatenbank der Fraunhofer-Gesellschaft
institution Open Polar
collection Publikationsdatenbank der Fraunhofer-Gesellschaft
op_collection_id ftfrauneprints
language English
description S.260-267 Bolted connections in support structures for offshore wind turbines need to be thoroughly designed against fatigue damage. However, experimental validation of applicable fatigue curves for bolts with large diameters is limited. In this paper appropriate design methods are described. Results of experimental fatigue tests on high-strength bolts of size M36 are presented, including a quantification of the effect of different zinc coatings and the validation of relevant design S-N curves. The experimental results are further used for validation and discussion of first calculation results with a numerical fatigue calculation method, based on the notch-strain approach.
format Conference Object
author Schaumann, P.
Eichstädt, R.
spellingShingle Schaumann, P.
Eichstädt, R.
Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
author_facet Schaumann, P.
Eichstädt, R.
author_sort Schaumann, P.
title Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
title_short Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
title_full Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
title_fullStr Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
title_full_unstemmed Fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
title_sort fatigue assessment of high-strength bolts with very large diameters in substructures for offshore wind turbines
publishDate 2015
url https://publica.fraunhofer.de/handle/publica/407943
genre Arctic
genre_facet Arctic
op_relation International Offshore and Polar Engineering Conference (ISOPE) 2015
25th International Ocean and Polar Engineering Conference - Ocean, arctic, energy : Gas hydrates and ocean mining, ISOPE 2015. Proceedings
https://publica.fraunhofer.de/handle/publica/407943
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