IP Library Granted Patent US 9,662,743
Granted Patent B2
US 9,662,743 · App. 14/164,506 · Granted May 30, 2017

Method for drilling a hole in an airfoil

Inventors: Zhaoli Hu (Greer, SC); Abe Denis Darling (Laurens, SC); Shamgar Elijah McDowell (Simpsonville, SC); Douglas Anthony Serieno (Simpsonville, SC)
Assignee: General Electric Company
B23K26/03B23K26/0006B23K26/146B23K26/388B23K26/389B23K2201/001B23K2203/172
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Quick Facts
Patent No.
US 9,662,743
App. No.
14/164,506
Granted
May 30, 2017
Kind
B2
Abstract

A method for manufacturing an airfoil is provided, the method including drilling a hole in a near wall of the airfoil using a laser drill and activating a back strike protection in a cavity of the airfoil. The method additionally includes detecting a breakthrough of a laser from the laser drill through the near wall of the airfoil and subsequently initiating a drilling subroutine, with the drilling subroutine including a continued operation of the laser drill. Such a method may provide for an improved hole, such as a cooling passage, in the airfoil.

Claims (32)

1. A method for drilling a hole an airfoil comprising:

directing a laser drill towards a near wall of the airfoil, the near wall positioned adjacent to a cavity defined in the airfoil and the laser drill utilizing a laser, the laser being a confined laser beam comprising a laser beam within a fluid column;

activating a back strike protection in the cavity of the airfoil;

detecting a breakthrough of a laser of the laser drill through the near wall of the airfoil;

initiating a drilling sub-routine subsequent to the detection of the breakthrough of the laser through the near wall of the airfoil, the drilling sub-routine comprising a continued operation of the laser drill for a predetermined amount of time, the predetermined amount of time being sufficient for the laser drill to substantially complete the first hole, wherein the predetermined amount of time is a variable amount of time determined as a percentage of an expected breakthrough time; and

disrupting the confined laser beam in the cavity of the airfoil using the back strike protection.

2. The method as in claim 1 , further comprising:

completing the drilling of the first hole in the near wall of the airfoil utilizing the drilling sub-routine.

3. The method as in claim 1 , wherein the back strike protection flows a fluid through the cavity of the airfoil to disrupt the laser.

4. The method as in claim 1 , wherein the back strike protection flows a gas through the cavity of the airfoil to disrupt the laser.

5. The method as in claim 1 , wherein directing the laser drill towards the near wall of the airfoil comprises directing the laser drill towards the near wall of the airfoil at a drilling angle, and wherein the drilling subroutine comprises adjusting the drilling angle at which the laser drill is directed towards the near wall of the airfoil.

6. The method as in claim 1 , wherein the fluid column of the confined laser beam defines a pressure and wherein the back strike protection flows a fluid through the cavity of the airfoil to disrupt the laser at a pressure greater than about twenty-five pounds per square inch.

7. The method as in claim 1 , wherein the hole is a cooling passage in the airfoil, and wherein the airfoil is for a turbomachine.

8. The method as in claim 1 , further comprising:

moving the laser drill in a pattern relative to the airfoil.

9. The method as in claim 1 , wherein engaging the back strike protection in the cavity of the airfoil comprises engaging the back strike protection in the cavity of the airfoil within a predetermined amount of time prior to an anticipated breakthrough.

10. The method as in claim 1 , further comprising:

engaging a breakthrough check program to ensure the breakthrough is detected within a predetermined amount of time.

11. The method as in claim 1 , wherein a first layer of the airfoil is a thermal barrier coating, and wherein the method further comprises adjusting one or more parameters of the laser drill after drilling through the thermal barrier coating.

12. The method of claim 1 , wherein directing the laser drill towards a near wall of the airfoil comprises directing the laser drill towards a near wall of the airfoil at a first pulse rate, frequency, and power, and wherein the drilling sub-routine further comprises a continued operation of the laser drill at the first pulse rate, frequency, and power.

13. A method of manufacturing an airfoil having a cavity defined therein comprising:

drilling a first hole in a near wall of the airfoil using a laser drill at a first pulse rate, frequency, and power, the near wall positioned adjacent to the cavity and the laser drill utilizing a confined laser beam comprising a laser beam within a fluid column;

detecting a first breakthrough of the laser of the laser drill through the near wall of the airfoil;

disrupting the confined laser beam in the cavity of the airfoil using the back strike protection;

initiating a drilling sub-routine subsequent to the detection of the first breakthrough, the drilling sub-routine comprising a continued operation of the laser drill at the first pulse rate, frequency, and power, the drilling sub-routine further comprising continued operation of the laser drill for a predetermined amount of time, the predetermined amount of time being sufficient for the laser drill to substantially complete the first hole, wherein the predetermined amount of time is a variable amount of time determined as a percentage of an expected breakthrough time; and

completing the drilling of the first hole in the near wall of the airfoil utilizing the drilling sub-routine.

14. The method as in claim 13 , further comprising:

moving the laser drill in a pattern relative to the airfoil.

15. The method as in claim 13 , further comprising:

activating a back strike protection in the cavity of the airfoil.

16. The method as in claim 13 , wherein the laser is a confined laser beam.

17. The method as in claim 13 , wherein the drilling subroutine comprises continued operation of laser drill in drilling the first hole for a predetermined amount of time.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2022
From: GENERAL ELECTRIC COMPANY
To: SYNOVA S.A.
Reel/Frame 061971/0058 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2014
From: DARLING, ABE DENIS
To: GENERAL ELECTRIC COMPANY
Reel/Frame 032090/0243 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2014
From: HU, ZHAOLI; DARLING, ABE DENIS; MCDOWELL, SHAMGAR ELIJAH; SERIENO, DOUGLAS ANTHONY
To: GENERAL ELECTRIC COMPANY
Reel/Frame 032050/0884 →
Continuity (1)
Related Publication 20150209899A1 · Jul 30, 2015