Characterization of as-welded microstructure of heat-affected zone in modified 9Cr-1Mo-V-Nb steel weldment

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Abstract

Non-equilibrium microstructure of the heat-affected zone (HAZ) in the as-welded modified 9Cr-1Mo-V-Nb pipe steel (P91) weldment deposited by gas tungsten arc welding (GTAW) and flux core arc welding (FCAW) has been characterized by field-emission scanning electron microscope (FESEM) and electron backscatter diffraction (EBSD). The heterogeneous structures in the sub-layers of the as-welded HAZ are attributable to phase transformations caused by the welding thermal cycles and the local structure variations in the as-received base metal. Coarse-grained heat-affected zone (CGHAZ) has a prior austenite grain (PAG) size of 20 μm. Fine uniformly-distributed precipitates and a higher fraction of MX carbonitrides are observed in the CGHAZ. Fine-grained heat-affected zone (FGHAZ) consists of the finest grains (1.22 μm measured by EBSD, 5 μm PAG size), coarse undissolved M23C6 carbides within the PAG boundaries and fine nucleated M23C6 particles within the martensite laths. Inter-critical heat-affected zone (ICHAZ) consists of partially austenitized grains and over-tempered martensite laths. EBSD kernel average misorientation (KAM) map in the FGHAZ close to the ICHAZ illustrates the greatest local strain variations with a moderate normalized KAM value of 0.92°. The majority (88.1%) of the matrix grains in the CGHAZ are classified as deformed grains by EBSD grain average misorientation (GAM) evaluation. The FGHAZ close to the ICHAZ has the most recrystallized grains with an area fraction of 14.4%. The highest density variation of precipitates within grains in the FGHAZ originates from the inhomogeneous chemistry in the base metal.

Original languageEnglish
Pages (from-to)225-234
Number of pages10
JournalMaterials Characterization
Volume118
DOIs
StatePublished - Aug 1 2016

Funding

This work has been financially sponsored by the DOE Office of Nuclear Energy's Nuclear Energy University Programs (Grant No. NEUP09-799 ) and Natural Sciences and Engineering Research Council (NSERC) Discovery Program (Grant No. RES0020431 ).

Keywords

  • EBSD
  • Heat-affected zone
  • Microstructure
  • P91 weldment

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