EP3554748B1

Integrated casting core-shell structure with floating tip plenum

Abstract

This record has no abstract on file.

EP3554748B1, drawing sheet 1
Sheet 1 of 11

Term

11.1 yearsleft in the term

Expires 24 October 2037.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

15 claims: 8 independent, 7 dependent

  1. 1
    A method for fabricating a ceramic core shell casting mold of a turbine blade or a stator 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 core shell casting mold is formed, the ceramic core shell casting mold comprising a main core portion, a tip plenum core (1203) floating above and disconnected from the main core portion, and a shell portion (1201) with at least one cavity between the main core portion and the shell portion (1201), the cavity adapted to define the shape of a cast component upon casting and removal of the ceramic core shell casting mold, and at least one core print filament (1204) for holding the tip plenum core (1203) in place, the at least one core print filament (1204) connecting the tip plenum core (1203) and the shell portion (1201).
  2. 4
    The method of any one of claims 1-3, wherein the at least one core print filaments (1204) has a cross sectional area of at least 2 mm 2 .
  3. 5
    The method of any one of claims 1-4, wherein the process comprises leaching, and the at least one core print filament (1204) provides a cooling passage in the turbine blade or stator vane after leaching.
  4. 6
    The method of any one of claims 1-5, wherein the ceramic core shell casting mold comprises a plurality of cooling hole filaments (1202) joining the main core portion and the shell portion (1201) where each of the plurality of cooling hole filament (1202) spans between the main core portion and the shell portion (1201), the cooling hole filaments (1202) adapted to define a plurality of cooling holes in the turbine blade or the stator vane upon removal of the ceramic core shell casting mold.
  5. 8
    A method of preparing a cast component, namely a turbine blade or a stator vane, comprising:pouring a liquid metal into a ceramic core shell casting mold and solidifying the liquid metal to form the cast component, the ceramic core shell casting mold comprising a main core portion, a tip plenum core (1203) floating above and disconnected from the main core portion, and a shell portion (1201) with at least one cavity between the core portion and the shell portion (1201), the cavity adapted to define the shape of a cast component upon casting and removal of the ceramic core shell casting mold, and at least one core print filament (1204) for holding the tip plenum core (1203) in place, the at least one core print filament (1204) connecting the tip plenum core (1203) and the shell portion (1201);and removing the ceramic core shell casting mold from the cast component.
  6. 11
    A ceramic core shell casting mold of a turbine blade or a stator vane, comprising:a main core portion, a tip plenum core (1203) floating above and disconnected from the main core portion, and a shell portion (1201) with at least one cavity between the main core portion and the shell portion (1201), wherein the main core portion, the tip plenum core (1203) and shell portion (1201) being formed of a photopolymerized material, the cavity adapted to define the shape of a cast component upon casting and removal of the ceramic core shell casting mold, and at least one core print filament (1204) for holding the tip plenum core (1203) in place, the at least one core print filament (1204) being formed of the photopolymerized material and connecting the tip plenum core (1203) and the shell portion (1201) to form the ceramic core shell casting mold.
  7. 14
    The ceramic core shell casting mold of any one of claims 11-13, wherein the photopolymerized material is a photopolymerized ceramic.
  8. 15
    The ceramic casting mold of any one of claims 11-13, wherein the photopolymerized material is a cured photopolymerized ceramic.