INTEGRATED CASTING CORE-SHELL STRUCTURE FOR MAKING CAST COMPONENTS HAVING THIN ROOT COMPONENTS
The present disclosure generally relates to integrated core-shell investment casting molds that provide an indentation structure corresponding to a thin root component of the turbine blade or vane (i.e. angel wing, skirt, damper lug).
1 . A method for fabricating a ceramic mold for a turbine blade or vane, comprising:
(a) contacting a cured portion of a workpiece with a liquid ceramic photopolymer;
(b) irradiating a portion of the liquid ceramic photopolymer adjacent to the cured portion through a window contacting the liquid ceramic photopolymer;
(c) removing the workpiece from the uncured liquid ceramic photopolymer; and
(d) repeating steps (a)-(c) until a ceramic mold is formed, the ceramic mold comprising:
(1) a core portion and a shell portion with at least one cavity between the core portion and the shell portion, the cavity adapted to define the shape of the turbine blade or vane upon casting and removal of the ceramic mold, and
(2) the cavity defining a turbine blade or vane root component having a minimum dimension of less than 0.64 mm.
2 . The method of claim 1 , wherein the process comprises, after step (d), a step (e) comprising pouring a liquid metal into a casting mold and solidifying the liquid metal to form the cast component.
3 . The method of claim 2 , wherein the process comprises, after step (e), a step (f) comprising removing the mold from the cast component.
4 . The method of claim 3 , wherein removing the mold from the cast component comprises a combination of mechanical force and chemical leaching.
5 . The method of claim 1 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.1 and 0.6 mm.
6 . The method of claim 1 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.2 and 0.5 mm.
7 . The method of claim 1 , wherein the turbine blade or vane root component is an angel wing, skirt, or damper lug.
8 . A method of preparing a turbine blade or vane comprising:
(a) pouring a liquid metal into a ceramic casting mold and solidifying the liquid metal to form the turbine blade or vane, the ceramic casting mold comprising:
(1) a core portion and a shell portion with at least one cavity between the core portion and the shell portion, the cavity adapted to define the shape of the turbine blade or vane upon casting and removal of the ceramic mold, and
(2) the cavity defining a turbine blade or vane root component having a minimum dimension of less than 0.64 mm.
(b) removing the ceramic casting mold from the cast component by leaching at least a portion of the ceramic core through the holes in the turbine blade or vane.
9 . The method of claim 8 , wherein removing the ceramic casting mold from the cast component comprises a combination of mechanical force and chemical leaching.
10 . The method of claim 8 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.1 and 0.6 mm.
11 . The method of claim 8 , wherein the turbine blade or vane root component is an angel wing, skirt, or damper lug.
12 . A ceramic casting mold comprising:
a core portion and a shell portion with at least one cavity between the core portion and the shell portion, the cavity adapted to define the shape of a cast component upon casting and removal of the ceramic mold, and
the cavity defining a turbine blade or vane root component having a minimum dimension of less than 0.64 mm.
13 . The ceramic casting mold of claim 12 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.1 and 0.6 mm.
14 . The ceramic casting mold of claim 12 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.2 and 0.5 mm.
15 . The ceramic casting mold of claim 12 , wherein the turbine blade or vane root component is an angel wing, skirt, or damper lug.
16 . A single crystal metal turbine blade or vane having an inner cavity and an outer surface, a plurality of cooling holes providing fluid communication between the inner cavity and outer surface, and a turbine blade root component having a minimum dimension of less than 0.64 mm.
17 . The single crystal metal turbine blade or vane of claim 16 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.1 and 0.6 mm.
18 . The single crystal metal turbine blade or vane of claim 16 , wherein the turbine blade or vane root component has a minimum dimension in the range of 0.2 and 0.5 mm.
19 . The single crystal metal turbine blade or vane of claim 16 , wherein the turbine blade or vane root component is an angel wing, skirt, or damper lug.
20 . The single crystal metal turbine blade or vane of claim 16 , where the single crystal metal is a superalloy.