Integrated casting core-shell structure for making cast component with novel cooling hole architecture
Integrated core-shell investment casting molds that provide tongue or groove structures corresponding, respectively, to groove or tongue structures in the surface of the turbine blade or stator vane, including in locations that are otherwise inaccessible provide a pathway to restrict cooling flow between turbine blades to the flowpath.
1. A method for fabricating a ceramic mold, 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 an 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, each formed from the liquid ceramic photopolymer, 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
(2) one or more inward protrusions formed from the liquid ceramic photopolymer and protruding inward from the shell into the at least one cavity, wherein each inward protrusion defines a groove in the cast component upon removal of the mold; and
wherein the cast component is adapted to fit with a second cast component by linking the groove in the cast component with a complementary tongue in the second cast component.
2. The method of claim 1 , wherein the method comprises, after step (d), a step (e) comprising pouring a liquid metal into the ceramic mold and solidifying the liquid metal to form the cast component.
3. The method of claim 2 , wherein the method 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 , the ceramic mold further comprising:
(3) one or more outward grooves extending outward in the shell from the cavity, wherein each outward groove defines a tongue in the cast component upon removal of the mold, wherein each of the one or more outward grooves in the shell is positioned such that each of the one or more tongues in the cast component is opposite a respective one of the one or more grooves in the cast component upon removal of the mold.
6. A method of preparing cast components, comprising:
fabricating a plurality of ceramic molds by the method of claim 5 ;
pouring a liquid metal into the plurality of ceramic molds and solidifying the liquid metal to form a plurality of cast components, each having one or more tongues opposite one or more grooves;
removing the molds from the cast components; and
joining the cast components together by placing the tongues of the cast components into the grooves of adjacent cast components.
7. The method of claim 6 , wherein the plurality of cast components is a plurality of single crystal metal turbine blades or stators each having a platform with a first lateral end and a second lateral end opposed to the first lateral end, wherein the one or more tongues are formed in the first lateral ends and the one or more grooves are formed in the second lateral ends.