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Title: Effect of homogenization heat treatment on the microstructure and heat-affected zone microfissuring in welded cast alloy 718

Journal Article · · Metallurgical Transactions, A
OSTI ID:230724
;  [1];  [2]
  1. Bristol Aerospace Ltd., Winnipeg, Manitoba (Canada)
  2. Univ. of Manitoba, Winnipeg, Manitoba (Canada). Dept. of Mechanical Engineering

The effect of homogenization temperature on microfissuring in the heat-affected zones of electron-beam welded cast INCONEL 718 has been studied. The material was homogenized at various temperatures in the range of 1,037 C and 1,163 C and air-cooled. The homogenized material was then electron-beam welded by the bead-on-plate welding technique. The microstructures and microfissuring in the heat-affected zone (HAZ) were evaluated by analytical scanning electron microscopy (SEM). The grain boundary segregation of various elements was evaluated by secondary ion mass spectroscopy (SIMS). It was observed that the total crack length (TCL) of microfissures first decreases with homogenization temperature and then increases, with a minimum occurring in the specimen heat treated at 1,163 C. This trend coincides with the variation in segregation of B at grain boundaries with homogenization temperature and has been explained by equilibrium and nonequilibrium segregation of B to grain boundaries during the homogenization heat treatment. No other element was observed to segregate at the grain boundaries. The variation in volume fraction of phases like {delta}-Ni{sub 3}Nb, MC carbide, and Laves phases does not follow the same trend as that observed for TCL and B segregation at the grain boundaries. Therefore, microfissuring in HAZ of welded cast INCONEL 718 is attributed to the segregation of B at the grain boundaries.

OSTI ID:
230724
Journal Information:
Metallurgical Transactions, A, Vol. 27, Issue 3; Other Information: PBD: Mar 1996
Country of Publication:
United States
Language:
English