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Acorrelationbetweenmicrostructuraldevelopmentandweldmetalchemicalcompositioncanbeobse...
A correlation between microstructural development and weld metal chemical composition can be observed. Weld C3F with the lowest C, Mn, and Si , and highest O contents, showed the smallest amount of AF and the highest proportion of PF(G), while weld A2F with the highest values of C, Mn, and Si, and the lowest O content, exhibited the highest proportion of AF and the lowest content of PF(G).
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A correlation between microstructural development and weld metal chemical composition can be observed. Weld C3F with the lowest C, Mn, and Si , and highest O contents, showed the smallest amount of AF and the highest proportion of PF(G), while weld A2F with the highest values of C, Mn, and Si, and the lowest O content, exhibited the highest proportion of AF and the lowest content of PF(G).
A correlation between microstructural development and weld metal chemical composition can be observed. Weld C3F with the lowest C, Mn, and Si , and highest O contents, showed the smallest amount of AF and the highest proportion of PF(G), while weld A2F with the highest values of C, Mn, and Si, and the lowest O content, exhibited the highest proportion of AF and the lowest content of PF(G).
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2006-04-20
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A correlation between microstructural development and weld metal chemical composition can be observed. Weld C3F with the lowest C, Mn, and Si , and highest O contents, showed the smallest amount of AF and the highest proportion of PF(G), while weld A2F with the highest values of C, Mn, and Si, and the lowest O content, exhibited the highest proportion of AF and the lowest content of PF(G).
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