Nova Patents
EP2808113A2

Hybrid diffusion-brazing process

Abstract

A hybrid diffusion-brazing process (300) and hybrid diffusion-brazed article are disclosed. The hybrid diffusion-brazing process (300) includes providing a component (101) having a temperature-tolerant region (105) and a temperature-sensitive region (106), brazing a braze material (103) to the temperature-tolerant region during a localized brazing cycle (100), then heating the component in a furnace (202) during a diffusion cycle (200). The brazing and the heating diffusion-braze the braze material (103) to the component, and the localized brazing cycle (100) is performed independent of the diffusion cycle (200) in the hybrid diffusion-brazing process. The hybrid diffusion-brazed article includes a component (101), and a braze material (103) diffusion-brazed to the component (101) with a filler material (103). The filler material has a melting temperature that is above a tolerance temperature of the component (101).

EP2808113A2, drawing sheet 1
Sheet 1 of 2

Term

7.7 yearsto projected expiry

Projected expiry 21 May 2034, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 10 independent, 5 dependent

  1. 1
    A hybrid diffusion-brazing process, comprising:providing a component having a temperature-tolerant region and a temperature-sensitive region;brazing a braze material to the temperature-tolerant region during a localized brazing cycle;then heating the component in a furnace during a diffusion cycle;wherein the brazing and the heating diffusion-braze the braze material to the component;and wherein the localized brazing cycle is performed independent of the diffusion cycle in the hybrid diffusion-brazing process.
  2. 5
    The hybrid diffusion-brazing process of any preceding claim, further comprising maintaining the temperature-sensitive region below a tolerance temperature during the localized brazing cycle.
  3. 8
    The hybrid diffusion-brazing process of any preceding claim, further comprising maintaining an existing brazing joint below a tolerance temperature.
  4. 9
    The hybrid diffusion-brazing process of any preceding claim, wherein the braze material is selected from the group consisting of a pre-sintered preform, a flexible tape made from mixed braze powders, a paste made from the mixed braze powders, and a dry mixture of the mixed braze powders.
  5. 10
    The hybrid diffusion-brazing process of any preceding claim, wherein the braze material includes a brazing temperature above 1038°C (1900°F).
  6. 11
    The hybrid diffusion-brazing process of any preceding claim, wherein the furnace is a vacuum furnace, a retort furnace, an inert gas furnace, or a combination thereof.
  7. 12
    The hybrid diffusion-brazing process of any preceding claim, wherein the furnace includes a diffusion temperature of between 899°C and 1232°C (1650°F and 2250°F).
  8. 13
    The hybrid diffusion-brazing process of any preceding claim, wherein the brazing and the heating form a repair process or a manufacture process.
  9. 14
    The hybrid diffusion-brazing process of any preceding claim, wherein the component is a gas turbine component.
  10. 15
    The hybrid diffusion-brazing process of any preceding claim, wherein the localized brazing cycle is performed for up to about 60 minutes.