<p>Fabrication of a Ni-based superalloy Alloy 690 cladded ASTM SA516 GR60 carbon steel (GR60) clad steel plate was carried out through vacuum hot roll bonding at 1323&#xa0;K for the first time. The as-rolled clad plate showed excellent metallurgical bonding at the joining interface, however, a precipitation zone within the Alloy 690 layer containing Cr<sub>23</sub>C<sub>6</sub> carbides was observed, which is detrimental to the intergranular corrosion resistance. A comprehensive approach integrating thermodynamic calculations and numerical simulations of long-range diffusion of alloying elements was employed to optimize the post rolling solutionization heat treatment temperature. Thermodynamic calculations predicted the possibility of reduction in Cr-carbide amount on solutionization in the temperature range of 1373&#xa0;K to 1573&#xa0;K. Guided by these calculations, as-rolled specimen was solutionized at 1373&#xa0;K for 4&#xa0;hours, however, the width of the Cr<sub>23</sub>C<sub>6</sub> carbide precipitation zone was found to increase instead of decreasing due to enhanced Cr and C diffusion. On the other hand, solutionization at 1473&#xa0;K for 4&#xa0;hours resulted in a substantial reduction in Cr<sub>23</sub>C<sub>6</sub> precipitates on Alloy 690 side. Formation of a thin stabilized <i>γ</i>-FCC (<i>γ</i><sub>s</sub>) was noticed on the GR60 side after solutionization at 1373&#xa0;K due to net influx of Ni from Alloy 690 alloy, which separates the original joining interface from the bulk GR60. The width of this <i>γ</i><sub>s</sub> region further increased after 1473&#xa0;K-4&#xa0;hours solutionization due to enrichment of Ni within GR60 layer. Overall, a higher solutionization temperature (1473&#xa0;K) was found to be more effective to reduce the Cr-carbide amount in Alloy 690 cladded GR60 plates than that usually employed 1373&#xa0;K for monolithic Alloy 690 plate.</p>

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Effect of Solutionization Temperature on the Interfacial Microstructure of a Hot Roll Bonded Alloy 690/Carbon Steel Clad Steel Plate

  • Laxya Gupta,
  • Nachiket Keskar,
  • Bikas C. Maji

摘要

Fabrication of a Ni-based superalloy Alloy 690 cladded ASTM SA516 GR60 carbon steel (GR60) clad steel plate was carried out through vacuum hot roll bonding at 1323 K for the first time. The as-rolled clad plate showed excellent metallurgical bonding at the joining interface, however, a precipitation zone within the Alloy 690 layer containing Cr23C6 carbides was observed, which is detrimental to the intergranular corrosion resistance. A comprehensive approach integrating thermodynamic calculations and numerical simulations of long-range diffusion of alloying elements was employed to optimize the post rolling solutionization heat treatment temperature. Thermodynamic calculations predicted the possibility of reduction in Cr-carbide amount on solutionization in the temperature range of 1373 K to 1573 K. Guided by these calculations, as-rolled specimen was solutionized at 1373 K for 4 hours, however, the width of the Cr23C6 carbide precipitation zone was found to increase instead of decreasing due to enhanced Cr and C diffusion. On the other hand, solutionization at 1473 K for 4 hours resulted in a substantial reduction in Cr23C6 precipitates on Alloy 690 side. Formation of a thin stabilized γ-FCC (γs) was noticed on the GR60 side after solutionization at 1373 K due to net influx of Ni from Alloy 690 alloy, which separates the original joining interface from the bulk GR60. The width of this γs region further increased after 1473 K-4 hours solutionization due to enrichment of Ni within GR60 layer. Overall, a higher solutionization temperature (1473 K) was found to be more effective to reduce the Cr-carbide amount in Alloy 690 cladded GR60 plates than that usually employed 1373 K for monolithic Alloy 690 plate.