The use of surface appearance in combination with charpy impact energy to determine J-integral values:

This paper gives the theoretical basis for a new method of using Charpy data to estimate fracture toughness in the transition region by using both fracture surface appearance and the traditional Charpy energy. Prior research has shown that the Charpy energy and fracture surface appearance can be use...

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Main Authors: Walters, C.L., Wallin, K.
Format: Article in Journal/Newspaper
Language:English
Published: 2013
Subjects:
Online Access:http://resolver.tudelft.nl/uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d
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author Walters, C.L.
Wallin, K.
author_facet Walters, C.L.
Wallin, K.
author_sort Walters, C.L.
collection TU Delft: Institutional Repository (Delft University of Technology)
description This paper gives the theoretical basis for a new method of using Charpy data to estimate fracture toughness in the transition region by using both fracture surface appearance and the traditional Charpy energy. Prior research has shown that the Charpy energy and fracture surface appearance can be used to estimate the upper-shelf J-integral [1]. The current paper extends those ideas by using that same information not to estimate upper-shelf Charpy energy, but to estimate the toughness of fracture mechanics specimens at the same temperature
format Article in Journal/Newspaper
genre Arctic
genre_facet Arctic
id fttno:oai:tudelft.nl:uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d
institution Open Polar
language English
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op_source Proceedings of the ASME 2013; 32nd International Conference on Ocean, Offshore and Arctic Engineering OMAE2013, June 9-14, 2013, Nantes, France, 1-9
publishDate 2013
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spelling fttno:oai:tudelft.nl:uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d 2025-01-16T19:53:11+00:00 The use of surface appearance in combination with charpy impact energy to determine J-integral values: Walters, C.L. Wallin, K. 2013-01-01 http://resolver.tudelft.nl/uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d en eng uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d 473551 http://resolver.tudelft.nl/uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d Proceedings of the ASME 2013; 32nd International Conference on Ocean, Offshore and Arctic Engineering OMAE2013, June 9-14, 2013, Nantes, France, 1-9 Marine High Tech Maritime and Offshore Systems Industrial Innovation Building Engineering & Civil Engineering SD - Structural Dynamics TS - Technical Sciences article 2013 fttno 2022-04-10T15:59:04Z This paper gives the theoretical basis for a new method of using Charpy data to estimate fracture toughness in the transition region by using both fracture surface appearance and the traditional Charpy energy. Prior research has shown that the Charpy energy and fracture surface appearance can be used to estimate the upper-shelf J-integral [1]. The current paper extends those ideas by using that same information not to estimate upper-shelf Charpy energy, but to estimate the toughness of fracture mechanics specimens at the same temperature Article in Journal/Newspaper Arctic TU Delft: Institutional Repository (Delft University of Technology)
spellingShingle Marine
High Tech Maritime and Offshore Systems
Industrial Innovation
Building Engineering & Civil Engineering
SD - Structural Dynamics
TS - Technical Sciences
Walters, C.L.
Wallin, K.
The use of surface appearance in combination with charpy impact energy to determine J-integral values:
title The use of surface appearance in combination with charpy impact energy to determine J-integral values:
title_full The use of surface appearance in combination with charpy impact energy to determine J-integral values:
title_fullStr The use of surface appearance in combination with charpy impact energy to determine J-integral values:
title_full_unstemmed The use of surface appearance in combination with charpy impact energy to determine J-integral values:
title_short The use of surface appearance in combination with charpy impact energy to determine J-integral values:
title_sort use of surface appearance in combination with charpy impact energy to determine j-integral values:
topic Marine
High Tech Maritime and Offshore Systems
Industrial Innovation
Building Engineering & Civil Engineering
SD - Structural Dynamics
TS - Technical Sciences
topic_facet Marine
High Tech Maritime and Offshore Systems
Industrial Innovation
Building Engineering & Civil Engineering
SD - Structural Dynamics
TS - Technical Sciences
url http://resolver.tudelft.nl/uuid:d6908f8c-e455-4b69-b5ab-54cb546dc61d