EP1998004A2

Turbine component with axially spaced radially flowing microcircuit cooling channels

Abstract

An airfoil for a gas turbine engine component (50) such as a turbine blade or a vane includes at least one microcircuit cooling channel (52) having a plurality of sub-channels (54) extending along a radial direction of the airfoil. The plurality of channels (54) are axially spaced, and are fed by radially spaced inlets (56).

EP1998004A2, drawing sheet 1
Sheet 1 of 5

Term

1.4 yearsto projected expiry

Projected expiry 6 March 2028, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

11 claims: 4 independent, 7 dependent

  1. 1
    A gas turbine engine component (50) comprising:a platform and an airfoil extending radially from the platform relative to an axis of rotation of a turbine that will receive the component;at least one central cooling channel (64) extending in said airfoil, said airfoil having a thickness measured between a concave wall (69) and a convex wall (71), with said at least one central cooling channel (64) being formed between said concave and said convex walls (69, 71), and a plurality of inlets (56) radially spaced along the airfoil, said plurality of inlets (56) each for communicating cooling air from said at least one central cooling channel (64) to a radially extending sub-channel (54) extending along a direction having a major component in a radial direction of the airfoil, said radially extending sub-channels (54) being axially spaced.
  2. 2
    The gas turbine engine component as set forth in Claim 1, wherein said gas turbine engine component (50) is a turbine blade.
  3. 3
    A gas turbine engine (10) comprising:a compressor section (16, 17);a combustor section (18);a turbine section (20, 21) for rotation about a central axis, said turbine section including at least one rotor (22) having a plurality of rotor blades (24), and a plurality of static vanes (26) positioned adjacent said rotor blades (24), each of said rotor blades (24) and said static vanes (26) having an airfoil portion, and the airfoil portion of at least one of said rotor blades (24) and said vanes (26) including at least one central cooling channel (64) extending in said airfoil, said airfoil having a thickness measured between a concave wall (69) and a convex wall (71), with said at least one central cooling channel (64) being formed between said concave and said convex walls (69, 71), and there being a plurality of inlets (56) spaced along a radial axis of the airfoil, said plurality of inlets (56) each for communicating cooling air from the central cooling channel (64) to a radially extending sub-channel (54) extending along a direction having a major component along the radial axis of the airfoil, said plurality of radially extending cooling channels (54) being axially spaced.
  4. 4
    The gas turbine engine as set forth in Claim 3, wherein said at least one of the rotor blades and vanes is a rotor blade (24).
  5. 5
    The gas turbine engine component or gas turbine engine as set forth in any preceding Claim, wherein said radially extending sub-channels (54) provides a microcircuit (52) having a relatively thin thickness in a direction defined between said central cooling channel (64) and one of said concave and convex walls (69, 71) of the airfoil.
  6. 6
    The gas turbine engine component or gas turbine engine as set forth in Claim 5, wherein there are a plurality of microcircuit cooling channels (52) in said airfoil.
  7. 7
    The gas turbine engine component or gas turbine engine as set forth in Claim 5 or 6, wherein air passes into said inlet (56), and toward said one wall (69, 71), said inlet (56) communicating with a first 90° bend into a communication channel (72), said first 90° bend extending into a direction generally parallel with said wall (69, 71), and into a second 90° bend, said second 90° bend turning said communication channel (72) into said radially extending sub-channel (54), and radially through the airfoil.
  8. 8
    A core for forming a cast article comprising:a first portion for forming a central cooling channel (64) in a cast article;a plurality of second portions contacting said first solid portion, said second portions being spaced from each other with intermediate voids along a length of said first portion, each of said second portions communicating with a third portion, with voids formed between adjacent ones of said third portions, and said third portions extending along a direction having a major component that is perpendicular to a direction in which said second portions extend away from said first portion.
  9. 9
    The core as set forth in Claim 8, wherein said second portions each extend into a fourth portion which bends approximately 90° relative to said second portions, and said fourth portions then extending in another 90° bend into said third portions.
  10. 10
    The core as set forth in Claim 8 or 9, wherein said core is for forming a gas turbine component having an airfoil.
  11. 11
    The core as set forth in Claim 10, wherein the component is a turbine blade.