Method and casting core for forming a landing for welding a baffle inserted in an airfoil
A method and casting core for forming a landing for welding a baffle inserted into an airfoil are disclosed, wherein the baffle landing of the blade or vane is formed in investment casting by the casting core rather than by wax, reducing tolerances and variability in the location of the baffle inserted into the cooling cavity of airfoil when the baffle is welded to the baffle landing.
1. A casting core for forming a first landing for welding a first baffle inserted into a cooling cavity of an airfoil, said casting core comprising:
a first landing portion in the shape of the first landing, the first landing portion including a laterally-extending first step portion being configured to mold the first landing as a spanwise-facing surface of the airfoil relative to an airfoil span direction onto which a first baffle is welded providing a spanwise locating surface for the first baffle, the first portion disposed at one of an outer platform end or an inner platform end, the outer platform end and the inner platform end disposed at opposing longitudinal ends of the casting core; and
a cooling cavity portion extending longitudinally between the outer platform end and the inner platform end;
the first landing portion extending substantially perpendicularly laterally from the cooling cavity portion;
wherein the surface on which the first baffle is welded extends laterally outwardly from the cooling cavity portion.
2. The casting core of claim 1 , further comprising a second landing portion in the shape of a second landing for welding a second baffle inserted into the cooling cavity, the second portion disposed at the other of the outer platform end and the inner platform end of the casting core, the second landing portion including a laterally-extending second step portion being configured to mold the second landing as a spanwise-facing surface.
3. The casting core of claim 1 , wherein the casting core is a ceramic polymer.
4. The casting core of claim 1 , wherein the casting core is a refractory metal core.