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Abreu, H. F. G.
Santos, L. P. M.
Davies, C. M.
Dye, D.
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Abreu, H. F. G.
Santos, L. P. M.
Davies, C. M.
Dye, D.
author Béreš, M.
Abreu, H. F. G.
Santos, L. P. M.
Davies, C. M.
Dye, D.
spellingShingle Béreš, M.
Abreu, H. F. G.
Santos, L. P. M.
Davies, C. M.
Dye, D.
Science and Technology of Welding and Joining
Effect of variant transformations in fusion zones of gas metal arc welds
Condensed Matter Physics
General Materials Science
author_sort béreš, m.
spelling Béreš, M. Abreu, H. F. G. Santos, L. P. M. Davies, C. M. Dye, D. 1362-1718 1743-2936 SAGE Publications Condensed Matter Physics General Materials Science http://dx.doi.org/10.1179/1362171815y.0000000025 <jats:p> The macro- and microtextures of gas metal arc welds fabricated using both conventional ferritic and low transformation temperature (LTT) filler metals were examined. Both welds were largely composed of acicular ferrite. The weld textures were found to be distinct, which is observed to be due to variant selection during the austenite to ferrite transformation. In situ electron backscatter diffraction performed during thermal cycling of the LTT fusion zone into the austenite phase field confirmed that these transformations satisfy the expected crystallographic relationships. Implications for welding consumable design and finite element process modelling are drawn. </jats:p> Effect of variant transformations in fusion zones of gas metal arc welds Science and Technology of Welding and Joining
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title Effect of variant transformations in fusion zones of gas metal arc welds
title_unstemmed Effect of variant transformations in fusion zones of gas metal arc welds
title_full Effect of variant transformations in fusion zones of gas metal arc welds
title_fullStr Effect of variant transformations in fusion zones of gas metal arc welds
title_full_unstemmed Effect of variant transformations in fusion zones of gas metal arc welds
title_short Effect of variant transformations in fusion zones of gas metal arc welds
title_sort effect of variant transformations in fusion zones of gas metal arc welds
topic Condensed Matter Physics
General Materials Science
url http://dx.doi.org/10.1179/1362171815y.0000000025
publishDate 2015
physical 353-360
description <jats:p> The macro- and microtextures of gas metal arc welds fabricated using both conventional ferritic and low transformation temperature (LTT) filler metals were examined. Both welds were largely composed of acicular ferrite. The weld textures were found to be distinct, which is observed to be due to variant selection during the austenite to ferrite transformation. In situ electron backscatter diffraction performed during thermal cycling of the LTT fusion zone into the austenite phase field confirmed that these transformations satisfy the expected crystallographic relationships. Implications for welding consumable design and finite element process modelling are drawn. </jats:p>
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author Béreš, M., Abreu, H. F. G., Santos, L. P. M., Davies, C. M., Dye, D.
author_facet Béreš, M., Abreu, H. F. G., Santos, L. P. M., Davies, C. M., Dye, D., Béreš, M., Abreu, H. F. G., Santos, L. P. M., Davies, C. M., Dye, D.
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description <jats:p> The macro- and microtextures of gas metal arc welds fabricated using both conventional ferritic and low transformation temperature (LTT) filler metals were examined. Both welds were largely composed of acicular ferrite. The weld textures were found to be distinct, which is observed to be due to variant selection during the austenite to ferrite transformation. In situ electron backscatter diffraction performed during thermal cycling of the LTT fusion zone into the austenite phase field confirmed that these transformations satisfy the expected crystallographic relationships. Implications for welding consumable design and finite element process modelling are drawn. </jats:p>
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spelling Béreš, M. Abreu, H. F. G. Santos, L. P. M. Davies, C. M. Dye, D. 1362-1718 1743-2936 SAGE Publications Condensed Matter Physics General Materials Science http://dx.doi.org/10.1179/1362171815y.0000000025 <jats:p> The macro- and microtextures of gas metal arc welds fabricated using both conventional ferritic and low transformation temperature (LTT) filler metals were examined. Both welds were largely composed of acicular ferrite. The weld textures were found to be distinct, which is observed to be due to variant selection during the austenite to ferrite transformation. In situ electron backscatter diffraction performed during thermal cycling of the LTT fusion zone into the austenite phase field confirmed that these transformations satisfy the expected crystallographic relationships. Implications for welding consumable design and finite element process modelling are drawn. </jats:p> Effect of variant transformations in fusion zones of gas metal arc welds Science and Technology of Welding and Joining
spellingShingle Béreš, M., Abreu, H. F. G., Santos, L. P. M., Davies, C. M., Dye, D., Science and Technology of Welding and Joining, Effect of variant transformations in fusion zones of gas metal arc welds, Condensed Matter Physics, General Materials Science
title Effect of variant transformations in fusion zones of gas metal arc welds
title_full Effect of variant transformations in fusion zones of gas metal arc welds
title_fullStr Effect of variant transformations in fusion zones of gas metal arc welds
title_full_unstemmed Effect of variant transformations in fusion zones of gas metal arc welds
title_short Effect of variant transformations in fusion zones of gas metal arc welds
title_sort effect of variant transformations in fusion zones of gas metal arc welds
title_unstemmed Effect of variant transformations in fusion zones of gas metal arc welds
topic Condensed Matter Physics, General Materials Science
url http://dx.doi.org/10.1179/1362171815y.0000000025