Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention

Unstable fractures generally occur in brittle materials under low-temperature service conditions. Toughness and welding residual stress are the main factors that should be evaluated when defining a brittle crack propagation path. In this study, a rainbow welding technique was proposed and confirmed...

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Main Authors: Gyubaek An, Jeongung Park, Ilwook Han
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/23/8613
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spelling doaj-7dc979c60f5f42c58b342a10d47af7d32020-12-02T00:02:44ZengMDPI AGApplied Sciences2076-34172020-12-01108613861310.3390/app10238613Effects of High Toughness and Welding Residual Stress for Unstable Fracture PreventionGyubaek An0Jeongung Park1Ilwook Han2Department of Naval Architecture and Engineering, Chosun University, Gwang-ju 61452, KoreaDepartment of Civil Engineering, Chosun University, Gwang-ju 61452, KoreaSteel Solution Research Lab, POSCO, Pohang 37859, KoreaUnstable fractures generally occur in brittle materials under low-temperature service conditions. Toughness and welding residual stress are the main factors that should be evaluated when defining a brittle crack propagation path. In this study, a rainbow welding technique was proposed and confirmed as being significantly useful in preventing unstable fractures in weld joints. The residual compressive stress in the crack front was particularly useful for decreasing the possibility of brittle fracture. The objective was to examine the effect of high welding consumable toughness welding residual stress, especially for avoiding brittle fracture through welding residual compressive stress.https://www.mdpi.com/2076-3417/10/23/8613brittle fracturebrittle crack arrestfracture toughnesswelding residual stresslow transformation temperature (LTT)
collection DOAJ
language English
format Article
sources DOAJ
author Gyubaek An
Jeongung Park
Ilwook Han
spellingShingle Gyubaek An
Jeongung Park
Ilwook Han
Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention
Applied Sciences
brittle fracture
brittle crack arrest
fracture toughness
welding residual stress
low transformation temperature (LTT)
author_facet Gyubaek An
Jeongung Park
Ilwook Han
author_sort Gyubaek An
title Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention
title_short Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention
title_full Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention
title_fullStr Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention
title_full_unstemmed Effects of High Toughness and Welding Residual Stress for Unstable Fracture Prevention
title_sort effects of high toughness and welding residual stress for unstable fracture prevention
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-12-01
description Unstable fractures generally occur in brittle materials under low-temperature service conditions. Toughness and welding residual stress are the main factors that should be evaluated when defining a brittle crack propagation path. In this study, a rainbow welding technique was proposed and confirmed as being significantly useful in preventing unstable fractures in weld joints. The residual compressive stress in the crack front was particularly useful for decreasing the possibility of brittle fracture. The objective was to examine the effect of high welding consumable toughness welding residual stress, especially for avoiding brittle fracture through welding residual compressive stress.
topic brittle fracture
brittle crack arrest
fracture toughness
welding residual stress
low transformation temperature (LTT)
url https://www.mdpi.com/2076-3417/10/23/8613
work_keys_str_mv AT gyubaekan effectsofhightoughnessandweldingresidualstressforunstablefractureprevention
AT jeongungpark effectsofhightoughnessandweldingresidualstressforunstablefractureprevention
AT ilwookhan effectsofhightoughnessandweldingresidualstressforunstablefractureprevention
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