Microstructure of Heterogeneous Mixtures for Gasless Combustion View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2004-09

AUTHORS

N. A. Kochetov, A. S. Rogachev, A. N. Emel'yanov, E. V. Illarionova, V. M. Shkiro

ABSTRACT

The microstructure of a mixture for gasless combustion and its compactability were studied. The electrical conductivity, thermal conductivity, and burning rate of the mixture were measured, and metallographical studies were performed. It was found that particle shape and the ability of the particles to form a continuous skeleton play a determining role in the gasless combustion of the mixture. Accounting for this fact allows one to explain some experimental results that are inconsistent with the conventional theory of gasless combustion. More... »

PAGES

564-570

References to SciGraph publications

  • 1997-09. Fractal structure and features of energy-release (combustion) processes in heterogeneous condensed systems in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1985-01. Thermal conductivity of certain aluminum-based SHS systems in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1999-09. Structure of heterogeneous condensed mixtures in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1978-09. Effect of capillary spreading on combustion-wave propagation in gas-free system in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 2001-03. Combustion of Titanium with Nonmetal Nitrides in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1989-11. Structural transformations of powder mixture components in a gasless combustion wave in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1991-12. Microstructural aspects of fabricating bodies by self-propagating synthesis in JOURNAL OF MATERIALS SCIENCE
  • 2001-05. “Roughness” of the Gasless Combustion Front in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1988-11. Gasless combustion in the system titanium-carbon-nickel in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1976-11. Effect of the inhomogeneity of the internal structure of the medium on the combustion of condensed mixtures, interacting through a layer of product in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 2002-07. Role of the Structure of Heterogeneous Condensed Mixtures in the Formation of Agglomerates in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 2003-03. Microheterogeneous Mechanism of Gasless Combustion in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1972-04. Propagation of the front of an exothermic reaction in condensed mixtures with the interaction of the components through a layer of high-melting product in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1023/b:cesw.0000041408.95421.d2

    DOI

    http://dx.doi.org/10.1023/b:cesw.0000041408.95421.d2

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1028616140


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