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Transmission Electron Microscopy Studies of Plasma Arc-Welded DP600 Dual-Phase Steel in Keyhole Mode
Amit A. Kuril, M. Jagannatham, ,
Published in Springer Boston
2019
Volume: 50
   
Issue: 12
Pages: 5689 - 5699
Abstract
Microstructural characteristics of keyhole plasma arc-welded DP600 steel were analyzed using optical microscopy, scanning electron microscopy, and analytical transmission electron microscopy. The fusion zone (FZ) was observed to consist of allotriomorphic, Widmanstätten, and acicular ferrite along with bainite and martensite leading to enhancement in the hardness compared with the base metal. The coarse-grain HAZ consisted of bainite and martensite, while the fine-grain HAZ consisted of bainitic ferrite and tempered martensite. The sub-critical HAZ was found to consist of tempered martensite with reduced density of dislocations and carbide precipitation. This softening resulted in yield point phenomena and failure in the sub-critical HAZ during the transverse tensile test of welds. The non-isothermal tempering resulted in retarded cementite precipitation due to inadequate time for diffusion of carbon, which led to the lowest hardness of 168 HV0.5 in the sub-critical HAZ. The different features in the FZ and HAZ and their correlation with mechanical properties are discussed. © 2019, The Minerals, Metals & Materials Society and ASM International.
About the journal
JournalData powered by TypesetMetallurgical and Materials Transactions A: Physical Metallurgy and Materials Science
PublisherData powered by TypesetSpringer Boston
ISSN10735623
Open AccessNo
Concepts (19)
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    Bainite
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    Carbides
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    Electric welding
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    Ferrite
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    Hardness
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    Heat affected zone
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    High resolution transmission electron microscopy
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    Martensite
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    Scanning electron microscopy
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    Tensile testing
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    ANALYTICAL TRANSMISSION ELECTRON MICROSCOPY
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    Carbide precipitation
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    CEMENTITE PRECIPITATION
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    DENSITY OF DISLOCATION
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    DIFFUSION OF CARBONS
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    MICRO-STRUCTURAL CHARACTERISTICS
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    TEMPERED MARTENSITE
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    TRANSVERSE TENSILE
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    Dual phase steel