IP Library Granted Patent US 9,695,696
Granted Patent B2
US 9,695,696 · App. 13/955,679 · Granted Jul 4, 2017

Turbine blade with sectioned pins

Inventors: Mark Andrew Jones (Greer, SC); Bradley Taylor Boyer (Greenville, SC); Robert Alan Brittingham (Greer, SC); Gregory Thomas Foster (Greer, SC); Christopher William Kester (Greenville, SC)
Assignee: General Electric Company
F01D5/16B22C9/10B22C9/24B23P15/04F01D5/147F01D5/18F01D5/186F01D5/187F05D2240/304F05D2240/305F05D2240/306F05D2260/2212F05D2260/2214F05D2260/22141F05D2260/961Y10T29/49337
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,695,696
App. No.
13/955,679
Granted
Jul 4, 2017
Kind
B2
Abstract

A turbine blade is provided and includes pressure and suction surfaces connected to define an interior through which coolant is passable and first and second pedestal arrays, each of the first and second pedestal arrays including pedestals respectively coupled to radially outboard portions of respective interior faces of one of the pressure and suction surfaces. The pedestals of the first pedestal array are separated from pedestals of the second pedestal array by gaps respectively defined therebetween.

Claims (30)

1. A turbine blade, comprising:

pressure and suction surfaces connected to define an interior through which coolant is passable; and

first and second pedestal arrays, each of the first and second pedestal arrays including pedestals respectively coupled to radially outboard portions of respective interior faces of one of the pressure and suction surfaces,

the pedestals of the first pedestal array being separated from pedestals of the second pedestal array by gaps respectively defined therebetween,

wherein the gaps are respectively defined on both sides of or along a camber line of the turbine blade, and

wherein adjacent gaps are respectively defined on opposite sides of the camber line; and further wherein a distribution of gaps respectively defined on each side of the camber line is random.

2. The turbine blade according to claim 1 , wherein the pedestals of the first pedestal array are respectively coupled to portions of the interior face of the pressure surface along an entire span of the turbine blade and the pedestals of the second pedestal array are respectively coupled to portions of the interior face of the suction surface along the entire span of the turbine blade.

3. The turbine blade according to claim 1 , wherein the gaps are about 0.03 inches wide.

4. The turbine blade according to claim 1 , wherein the gaps are respectively defined along a camber line of the turbine blade.

5. The turbine blade according to claim 1 , wherein the gaps are respectively defined on one side of a camber line of the turbine blade.

6. The turbine blade according to claim 1 , wherein the gaps are respectively defined in parallel with a camber line of the turbine blade.

7. The turbine blade according to claim 1 , wherein the gaps are respectively oriented transversely or non-parallel with respect to a camber line of the turbine blade.

8. A turbine blade, comprising:

pressure and suction surfaces connected to define an interior through which a coolant is passable; and

first and second pedestal arrays, each of the first and second pedestal arrays including:

extended pedestals respectively coupled to respective interior faces of one of the pressure and suction surfaces; and

pedestals respectively coupled to radially outboard portions of respective interior faces of one of the pressure and suction surfaces,

the pedestals of the first pedestal array being separated from pedestals of the second pedestal array by gaps respectively defined therebetween,

wherein the gaps are respectively defined on one side of a camber line of the turbine blade,

wherein a distribution of gaps respectively defined on each side of the camber line is random.

9. The turbine blade according to claim 8 , wherein the pedestals of the first pedestal array are respectively coupled to portions of the interior face of the pressure surface along an entire span of the turbine blade and the pedestals of the second pedestal array are respectively coupled to portions of the interior face of the suction surface along the entire span of the turbine blade.

10. The turbine blade according to claim 8 , wherein the gaps are respectively defined along a camber line of the turbine blade.

11. The turbine blade according to claim 8 , wherein the gaps are respectively defined on both sides of or along a camber line of the turbine blade.

12. The turbine blade according to claim 8 , wherein adjacent gaps are respectively defined on opposite sides of the camber line.

13. The turbine blade according to claim 8 , wherein the gaps are respectively defined in parallel with a camber line of the turbine blade.

14. The turbine blade according to claim 8 , wherein the gaps are respectively oriented transversely or non-parallel with respect to a camber line of the turbine blade.

15. A method of forming a turbine blade, comprising:

creating a cavity forming ceramic core including an elongate element having pedestal forming recesses separated from pedestal forming recesses by gap forming core portions;

forming pressure and suction sides of the turbine blade on either side of the elongate element such that the pressure and suction sides include pedestals formed in the pedestal forming recesses; and

assembling the pressure and suction sides of the turbine blade together such that the pressure side pedestals are separated from the suction side pedestals by gaps having dimensions similar to the gap forming core portions, wherein the gaps are respectively defined on both sides of or along a camber line of the turbine blade, and wherein adjacent gaps are respectively defined on opposite sides of the camber line; and further wherein a distribution of gaps respectively defined on each side of the camber line is random.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2013
From: JONES, MARK ANDREW; BOYER, BRADLEY TAYLOR; BRITTINGHAM, ROBERT ALAN; FOSTER, GREGORY THOMAS; KESTER, CHRISTOPHER WILLIAM
To: GENERAL ELECTRIC COMPANY
Reel/Frame 030915/0751 →
Continuity (1)
Related Publication 20150037165A1 · Feb 5, 2015