Phase Composition of the Core–Shell Transition Layer in a Construction Ceramic Matrix Structure Made from Non-Plastic Raw Material with Clay Additives

A. Yu Stolboushkin, V. I. Vereshchagin, O. A. Fomina

Research output: Contribution to journalArticle

Abstract

The process of forming, by means of a proposed technology, the transitional layer between a dispersed medium and a dispersed phase of a ceramic matrix composite is investigated and a method of fabricating multilayer samples modeling at the macro level the interface between phases in the direction matrix–core of the composite material is presented. A qualitative and semiquantitative analysis is presented of new phases which are products of an interaction, occuring during firing, of a core made from sludgy iron-ore wastes and a matrix made from clayey raw material.

Original languageEnglish
Pages (from-to)16-21
Number of pages6
JournalGlass and Ceramics (English translation of Steklo i Keramika)
Volume76
Issue number1-2
DOIs
Publication statusPublished - 15 May 2019

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Phase interfaces
Ceramic matrix composites
Iron ores
Phase composition
Macros
Raw materials
Multilayers
Clay
Composite materials
clay
Direction compound

Keywords

  • ceramic matrix composite
  • layer-by-layer phase analysis
  • model multilayer sample
  • transitional layer between the core and shell of the matrix of the composite

ASJC Scopus subject areas

  • Ceramics and Composites
  • Mechanics of Materials
  • Materials Chemistry

Cite this

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AB - The process of forming, by means of a proposed technology, the transitional layer between a dispersed medium and a dispersed phase of a ceramic matrix composite is investigated and a method of fabricating multilayer samples modeling at the macro level the interface between phases in the direction matrix–core of the composite material is presented. A qualitative and semiquantitative analysis is presented of new phases which are products of an interaction, occuring during firing, of a core made from sludgy iron-ore wastes and a matrix made from clayey raw material.

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