Laser powder deposition weld rework for gas turbine engine non-fusion weldable nickel castings
A method of reworking or repairing a component includes removing a casting defect from a component manufactured of a non-fusion weldable base alloy to form a cavity that results in a through hole; sealing the through hole with a backing; and at least partially filling the cavity with a multiple of layers of a multiple of laser powder deposition spots, each of the multiple of laser powder deposition spots formed of a filler alloy, a first layer of the multiple of layers includes a perimeter of the multiple of laser powder deposition spots that overlap a wall of the cavity and the backing.
1. A cast component for a gas turbine engine comprising:
a cast component manufactured of non-fusion weldable base alloy with a cavity and a backing, wherein the cavity is at least partially filled with a multiple of layers of a multiple of laser powder deposition spots, each of the multiple of laser powder deposition spots formed of a filler alloy, at least one layer of the multiple of layers includes a perimeter of the multiple of laser powder deposition spots that overlap a wall of the cavity and the backing.
2. The cast component as recited in claim 1 , wherein the non-fusion weldable base alloy is a high gamma prime nickel-based alloy.
3. The cast component as recited in claim 2 , wherein the high gamma prime nickel-based alloy is polycrystalline cast nickel base superalloy.
4. The cast component as recited in claim 1 , wherein each spot in a layer is located between two spots from a prior layer.