IL83805A

Method of making ceramic articles having channels therein and articles made thereby

Abstract

This record has no abstract on file.

IL83805A, drawing sheet 1
Sheet 1 of 3

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

32 claims: 3 independent, 29 dependent

  1. 1
    r.lr 1. A method for producing a self-supporting ceramic body having therein at least one channel inversely replicating the geometry of a configured fugitive metal, said ceramic body being obtained by oxidation of a parent metal to form a polycrystalline material comprising an oxidation reaction product of said parent metal with an oxidant, the method comprising the steps of:(a) positioning said configured fugitive metal adjacent to said parent metal such that formation of oxidation reaction product of the parent metal will engulf at least a portion of said configured fugitive metal;(b) heating said parent metal to a temperature region above its melting point but below the melting point of said oxidation reaction product to form a body of molten parent metal and, at said temperature region, reacting molten parent metal with said oxidant to form said oxidation reaction product, and maintaining at least a portion of said oxidation reaction product in contact with and between said body of molten metal and said oxidant, to progressively draw molten parent metal through the oxidation reaction product towards said oxidant and said configured fugitive metal to form fresh oxidation reaction product at an interface between said oxidant and previously formed oxidation reaction product;(c) continuing said reacting for a time sufficient to engulf at least a portion of said configured fugitive metal within said polycrystalline material, whereby said fugitive metal substantially maintains its original shape until it is contacted by said oxidation reaction product, whereupon said fugitive metal becomes dispersed within said polycrystalline material and at least one channel which inversely replicates the geometry of said engulfed portion of said configured fugitive metal is substantially concurrently formed;and (d) recovering said ceramic body.
  2. 2
    A method for producing a self-supporting ceramic composite body having therein at least one channel inversely replicating the geometry of a configured fugitive metal, said ceramic composite body comprising a ceramic matrix obtained. by oxidation of a parent metal to form a polycrystal 1ine material and a filler material infiltrated by said ceramic matrix, the method comprising the steps of:(a) positioning said configured fugitive metal, supported by a mass of filler material. adjacent to a parent metal such that formation of oxidation reaction product of the parent metal will infiltrate said filler and engulf at least a portion.of said configured fugitive metal, said filler material being permeable to growth therethrough of said oxidation reaction product;(b) heating said parent metal to a temperature region above its melting point but below the melting point. of said oxidation reaction product to form a body of molten parent metal and, at said temperature region, reacting the molten parent metal with an oxidant to form said oxidation reaction product, and maintaining at least a portion of said oxidation reaction product in contact with and between said body of molten metal and said oxidant to progressively draw molten parent metal through the oxidation reaction product towards said oxidant and said configured fugitive metal to form fresh oxidation reaction product at an interface between said oxidant and previously formed oxidation reaction product;(c) continuing said reacting for a time sufficient to engulf at least a portion of said configured fugitive metal within said polycrystal 1ine material, whereby said fugitive metal substantially maintains its original shape until it is contacted by said oxidation reaction product, whereby said fugitive metal becomes dispersed within said polycrystal1ine material, and at least one channel which inversely replicates the geometry of said engulfed portion of said configured fugitive metal is substantially concurrently formed;and (d) separating the resulting ceramic composite body from any excess filler.
  3. 21
    A self-supporting ceramic composite body comprising at least one channel located in a polycrystalline matrix which incorporates a filler material, said at least one channel inversely replicating the geometry of a configured fugitive metal being positioned at an initial location within said filler material, said polycrystal 1ine matrix being obtained by oxidation of a parent metal precursor to grow an oxidation reaction product of said parent metal and at least one metallic constituent including said fugitive metal, the oxidation of said parent metal being effected under conditions which cause the growing oxidation reaction product to engulf at least a portion of said configured fugitive metal and resulting in said configured fugitive metal dispersing into the polycrystalline matrix which defines said at least one channel within a space formerly occupied by the engulfed portion of said configured fugitive metal.