EP3663432A2

Coating systems including infiltration coatings and reactive phase spray formulation coatings

Abstract

A method includes applying an infiltration coating (122) on a thermal barrier coating (106) of an article (510, 702). The infiltration coating (122) infiltrates at least some pores (124) of the thermal barrier coating (106). The infiltration coating (122) decomposes within the at least some pores (124) of the thermal barrier coating (106) to coat a portion of the at least some pores (124) of the thermal barrier coating (106). The infiltration coating (122) reduces a porosity of the thermal barrier coating (106). The method also includes applying a reactive phase spray formulation coating (102) on the thermal barrier coating (106). The reactive phase spray formulation coating (102) reacts with dust deposits (104) on the thermal barrier coating (106).

EP3663432A2, drawing sheet 1
Sheet 1 of 7

Term

13.2 yearsto projected expiry

Projected expiry 3 December 2039, counted from filing; an application has no term until it is granted.

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

15 claims: 8 independent, 7 dependent

  1. 1
    A method comprising applying an infiltration coating (122) on a thermal barrier coating (106) of an article (510), the infiltration coating (122) configured to infiltrate at least some pores (124) of the thermal barrier coating (106), wherein the infiltration coating (122) is configured to decompose within the at least some pores (124) of the thermal barrier coating (106) to coat a portion of the at least some pores (124) of the thermal barrier coating (106), wherein the infiltration coating (122) is configured to reduce a porosity of the thermal barrier coating (106);and applying a reactive phase spray formulation coating (102) on the thermal barrier coating (106), wherein the reactive phase spray formulation coating (102) is configured to react with dust deposits (104) on the thermal barrier coating (106).
  2. 4
    The method of any preceding claim, wherein a bulk (120) of the thermal barrier coating (106) has a porosity having a first porosity value, wherein the infiltration coating (122) is configured to infiltrate the at least some pores (124) of the thermal barrier coating (106) to reduce the porosity of the bulk (120) of the thermal barrier coating (106) from the first porosity value to a second porosity value that is less than the first porosity value.
  3. 6
    The method of any preceding claim, wherein the infiltration coating (122) is configured to decompose by heating the infiltration coating (122), wherein heating the infiltration coating (122) changes the infiltration coating (122) from a liquid solution (420, 520) to solid oxide particles (430, 530).
  4. 8
    The method of any preceding claim, wherein the reactive phase spray formulation coating (102) is configured to remain on a surface (518) of the thermal barrier coating (106).
  5. 9
    The method of any preceding claim, wherein the reactive phase spray formulation coating (102) comprises a base material (603) and a binder material (605).
  6. 11
    A coating system (100) configured to be applied to a thermal barrier coating (106) of an article (510, 702), the coating system (100) comprising:an infiltration coating (122) configured to be applied to the thermal barrier coating (106), the infiltration coating (122) configured to infiltrate at least some pores (124) of the thermal barrier coating (106), wherein the infiltration coating (122) is configured to decompose within the at least some pores (124) of the thermal barrier coating (106) to coat a portion of the at least some pores (124) of the thermal barrier coating (106), wherein the infiltration coating (122) is configured to reduce a porosity of the thermal barrier coating (106);and a reactive phase spray formulation coating (102) configured to be applied to the thermal barrier coating (106), wherein the reactive phase spray formulation coating (102) is configured to react with dust deposits (104) on the thermal barrier coating (106).
  7. 14
    The coating system (100) of any of claims 11 to 13, wherein the article (510, 702) is a surface (518) of a turbine assembly.
  8. 15
    A system comprising:an article (510, 702) including a thermal barrier coating (106);and a coating system (100) configured to be deposited on the thermal barrier coating (106) of the article (510, 702), the coating system (100) comprising: an infiltration coating (122) configured to be deposited on the thermal barrier coating (106), the infiltration coating (122) configured to infiltrate at least some pores (124) of the thermal barrier coating (106), wherein the infiltration coating (122) is configured to decompose within the at least some pores (124) of the thermal barrier coating (106) to coat a portion of the at least some pores (124) of the thermal barrier coating (106), wherein the infiltration coating (122) is configured to reduce a porosity of the thermal barrier coating (106);and a reactive phase spray formulation coating (102) configured to be deposited on the thermal barrier coating (106), wherein the reactive phase spray formulation coating (102) is configured to react with dust deposits (104) on the thermal barrier coating (106), wherein the infiltration coating (122) and the reactive phase spray formulation coating (102) are configured to reduce an amount of spalling of the thermal barrier coating (106) relative to one or more of the infiltration coating (122) or the reactive phase spray formulation coating (102) not being deposited on the thermal barrier coating (106).