IL51443A

Ceramic-metal laminates and their production

Abstract

This record has no abstract on file.

IL51443A, drawing sheet 1
Sheet 1 of 6

Term

No projected expiry on record.

  1. Priority
  2. Filed
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  4. Today

17 claims: 9 independent, 8 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A method of bonding a metallic member to a ceramic member, the two members having different coefficients of expansion which comprises : (a) rigidly securing fast-en-ing to the metallic member a low modulus ,flexible , low density metallic structure interface;and (2) securing the metallic structure to the ceramic member so that thermal strains caused by temperature differentials between the ceramic member and the metallic member are taken up without harmful effect by the low modulus,low density metallic structure.
  2. 7
    A method of bonding a metallic member to a ceramic member which comprises :a) bonding a ceramic member to the ceramic face of a ceramic-metal composite, the ceramic-metal composite having a predominantly ceramic face and metal/ elements (as herein defined) projecting from the opposite surface;b) brazing a metal fiber mat having two surfaces to the metallic member so that one surface of the mat is rigidly fastened to the metallic member;and, c) spot brazing the other surface of the mat to the metallic elements on the ceramic-metal composite.
  3. 8
    A laminated composite comprising:(a) a high temperature resistant ceramic layer having inner and outer faces;(b) metallic elements (as herein defined) rigidly secured to the inner face of the ceramic layer, a low modulus, low density flexible metallic layer having inner and outer faces fastened at its inner face to the metallic elements, and the outer face of the low modulus layer being fastened to a metallic member layer.
  4. 10
    A laminated structure comprising a fired high temperature ceramic layer having inner and outer faces, a ceramic-metal composite layer having a ceramic outer face and metallic elements (as herein defined) projecting from the inner face, the inner face of the ceramic layer being bonded to the outer face of the ceramic-metal composite layer, a layer consisting of a mat of high melting metal fibers, said mat having a low modulus and having inner and outer faces, said mat being brazed at its outer face to the metallic elements on the inner face of the ceramic-metal composite layer, said mat being brazed on its inner face over the entire surface thereof to a metallic member structure.
  5. 11
    A laminated structure comprising a fired high temperature ceramic member, said ceramic member having embedded in one face thereof a sufficient thickness of a low modulus metal fiber mat to form a strong mechanical bond, and a metallic structure rigidly fastened to the metal fiber mat.
  6. 12
    A laminate structure comprising a fired high temperature ceramic member with metal staples embedded therein, the staples projecting beyond both exterior surfaces of the ceramic member. ID 4118-T
  7. 13
    A laminate composite structure comprising:(a) a ceramic layer having a thermal coefficient of expansion ranging from /1x10 & to 8x10^ in/in/°F;(b) a high temperature corrosion resistant metallic base having a thermal coefficient of expansion ranging from 2x10'^ to 20x10 in/in°F;(c) a resilient metal interface secured to both the ceramic layer and the metallic base to provide movement therebetween without damaging the layer or the base.
  8. 16
    A method of making a ceramic-metal composite comprising the steps of:(a) providing high temperature resistant alloy metal plate and a low modulus,low density metal pad;(b) bonding the pad to the metal plate;and (c) plasma spraying a coating of ceramic material onto the pad, the ceramic being selected from a group of one or more of the following: stabilized zirconia, calcia, magnesia, yttria, glass, silicon carbide, silicon nitride, alumina, mullite, borides, silicides glass-ceramics, or cermets. ID 4118-T
  9. 17
    A method of making a ceramic-metal composite 2 comprising the steps of:(a) providing a low modulus,low density , ma,t, 4 metal having two surfaces;(b) plasma spraying on one of the surfaces _ , mat , . _ , . , . _ , 6 of the a ceramic material, the material being selected from a group of one or more of the following: 8 stabilized zirconia, calcia, magnesia, yttria, glass, silicon carbide, silicon 10 nitride, alumina, mullite, borides, silicides, glass ceramics, or cermets;12 (c) providing a plate of high temperature resistant alloy metal;and 14 (d) bonding the surface without the ceramic material to the metal plate to form the composite.