Claims
- 1) A method of correcting defects in a metal workpeice, comprising the steps of:
determining a location of a defect in a workpiece, the workpiece having a substate comprising a metal alloy; removing material of the workpiece substrate at the location of the defect to form a cleaned area in the workpiece substrate; coating the cleaned area in the workpiece substrate with a high-density coating; and hot isostatic pressing treating the coated workpiece to produce diffusion bonding between the workpiece substrate and the high-density coating.
- 2) A method of correcting defects in a metal workpiece according to claim 1; wherein the defect comprises at least one of a void or an inclusion.
- 3) A method of correcting defects in a metal workpiece according to claim 2; further comprising the step of performing a machining operation after the hot isostatic pression treating step to obtained desired dimensions of the coated workpiece.
- 4) A method of correcting defects in a metal workpiece according to claim 1; wherein the step of removing material comprises at least one of sandblasting or grinding.
- 5) A method of correcting defects in a metal workpiece according to claim 1; further comprising the step of performing a sintering heat treatment on the coated workpiece substrate to remove entrapped gas from the coating material prior to the step of hot isostatic pressing treating.
- 6) A method of correcting defects in a metal workpiece according to claim 5; wherein the step of performing the sintering heat treatment comprises sintering at a temperature at a range of about 1825 to 2300 degrees F. for about ½ to 2 hours.
- 6) A method of correcting defects in a metal workpiece according to claim 1; wherein the step of performing the high-density coating comprises performing a high-density coating process such as hyper-velocity oxy-fuel thermal spray process or a detonation gun process to apply a high-density coating having the same metal alloy composition as the metal alloy substrate.
- 7) A method of correcting defects in a metal workpiece according to claim 1; wherein the metal alloy substrate comprises a nickel or cobalt-based superalloy; and the step of performing the high-density coating comprises performing a high-density coating process such as hyper-velocity oxy-fuel thermal spray process or a detonation gun process to apply a high-density coating having the same nickel or cobalt-based super alloy composition as the metal alloy substrate.
- 8) A method of correcting defects in a metal workpiece according to claim 1; wherein the step of performing the hot isostatic pressing treatment comprises hot isostatic pressing at a temperature of about 2200 degrees F. in about 15 KSI argon for about 4 hours.
- 9) A method of repairing a metal workpeice, comprising the steps of: determining dimensional differences between pre-repair workpiece dimensions and desired post-repair workpiece dimensions, the workpiece comprising a metal alloy; coating the workpiece using a high-density coating process to a coating thickness at least sufficient to obtain the coated workpiece having the desired post-repair workpiece dimensions; and hot isostatic pressing treating the coated workpiece to produce diffusion bonding bewteen workpiece substrate and the high-density coating.
- 10) A method of repairing a metal workpiece according to claim 9; wherein the coating material built-up during the high-density coating process is comprised of the same metal alloy as the workpiece substrate.
- 11) A method of repairing a metal workpiece according to claim 9; wherein the coating material built-up during the high-density coating process is comprised of a different metal alloy as the workpeice substrate.
- 12) A method of repairing a metal workpiece according to claim 9; further comprising the step of performing a sintering heat treatment on the coated workpiece to remove entrapped gas from the coating material prior to the step of hot isostatic pressing treating.
- 13) A method of repairing a metal workpiece according to claim 12; wherein the step of performing the sintering heat treatment comprises sintering at a temperature at a range of about 1825 to 2300 degrees F. for about ½ to 2 hours.
- 14) A method of repairing a metal workpiece according to claim 9; wherein the step of performing the high-density coating comprises performing a high-density coating process such as hyper-velocity oxy-fuel thermal spray process or a detonation gun process to apply a high-density coating having the same metal alloy composition as the metal alloy substrate.
- 15) A method of repairing a metal workpiece according to claim 9; wherein the metal alloy substrate comprises a nickel or cobalt-based superalloy; and the step of performing the high-density coating comprises performing a high-density coating process such as hyper-velocity oxy-fuel thermal spray process or a detonation gun process to apply a high-density coating having the same nickel or cobalt-based super alloy composition as the metal alloy substrate.
- 16) A method of correcting defects in a metal workpiece according to claim 1; wherein the step of performing the hot isostatic pressing treatment comprises hot isostatic pressing at a temperature of about 2200 degrees F. in about 15 KSI argon for about 4 hours.
- 17) A method of correcting defects in a metal workpeice, comprising the steps of:
determining a location of a defect comprised of a void or an inclusion in a workpiece, the workpiece having a substate comprising a metal alloy; removing material of the workpiece substrate at the location of the defect to form cleaned area in the workpiece substrate; coating the cleaned area in the workpiece substrate with a high-density coating; performing a sintering heat treatment on the coated workpiece substrate to remove entrapped gas from the coating material prior to a step of hot isostatic pressing treating; and hot isostatic pressing treating the coated workpiece to produce diffusion bonding bewteen the workpiece substrate and the high-density coating.
- 18) A method of correcting defects in a metal workpiece according to claim 17; wherein the step of removing material comprises at least one of sandblasting or grinding.
- 19) A method of correcting defects in a metal workpiece according to claim 17; wherein the step of performing the high-density coating comprises performing a high-density coating process such as hyper-velocity oxy-fuel thermal spray process or a detonation gun process to apply a high-density coating having the same metal alloy composition as the metal alloy substrate.
- 20) A method of correcting defects in a metal workpiece according to claim 17; wherein the metal alloy substrate comprises a nickel or cobalt-based superalloy; and the step of performing the high-density coating comprises performing a high-density coating process such as hyper-velocity oxy-fuel thermal spray process or a detonation gun process to apply a high-density coating having the same nickel or cobalt-based super alloy composition as the metal alloy substrate.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application is a Continuation-in-Part of application Ser. No. 09/505,803, filed Feb. 17, 2000, which is a Continuation-in-Part of application Ser. No. 08/143,643, filed Sep. 3, 1998, now U.S. Pat. No. 6,049,978, which is a Continuation-in-Part of application Ser. No. 08/993,116, now U.S. Pat. No. 5,956,845, which is the utility patent application of a U.S. provisional application Serial No. 60/033,858, filed Dec. 23, 1996; and relates to an invention disclosed in an Invention Disclosure Document accepted under the Disclosure Document program on or about Nov. 5, 1996 and assigned Disclosure Document No. 407616.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09505803 |
Feb 2000 |
US |
Child |
10241854 |
Sep 2002 |
US |
Parent |
08143643 |
Nov 1993 |
US |
Child |
09505803 |
Feb 2000 |
US |