Some observations on the wetting and bonding of nitride ceramics View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

1990-06

AUTHORS

M. G. Nicholas, D. A. Mortimer, L. M. Jones, R. M. Crispin

ABSTRACT

Several series of experiments have been conducted to gain information about the wettability of AlN, BN, Si3N4 and two sialon ceramics by potential braze materials. It was possible to achieve wetting of all five ceramics using aluminium, copper-titanium alloys, and a Ag-28Cu-2Ti alloy. Wetting by aluminium and the Ag-28Cu-2Ti alloy was usually good. Both wetting and non-wetting alloys containing titanium reacted to form TiN and it is argued that the achievement of wettability is associated with a certain degree of hypostoichiometry. While aluminium should also have reacted, no clear evidence was obtained. In supplementary experiments it was found that bonds formed by brazing with aluminium at 1000 °C could have shear strengths as great as 60MPa. Although the experimental work was preliminary in nature, it suggested that good brazing systems could be developed. More... »

PAGES

2679-2689

References to SciGraph publications

  • 1987-08. Wettability of silicon nitride by aluminium, copper and silver in JOURNAL OF MATERIALS SCIENCE LETTERS
  • 1986-09. Metallizing of silicon nitride with amorphous active filler metal in JOURNAL OF MATERIALS SCIENCE LETTERS
  • 1968-11. The strength of metal/alumina interfaces in JOURNAL OF MATERIALS SCIENCE
  • 1987-04. Effect of pre-heat-treatment on silicon nitride joining with aluminium braze in JOURNAL OF MATERIALS SCIENCE LETTERS
  • 1983. Brazing of Silicon Nitride in PROGRESS IN NITROGEN CERAMICS
  • 1986-07. Observation of Al/Si3N4 interface in JOURNAL OF MATERIALS SCIENCE LETTERS
  • 1985-05. Method for preventing thermal expansion mismatch effect in ceramic-metal joining in JOURNAL OF MATERIALS SCIENCE LETTERS
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/bf00584866

    DOI

    http://dx.doi.org/10.1007/bf00584866

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1021412827


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