Ignition mechanism of the titanium-boron pyrotechnic mixture
Autor: | C. M. Love, J. E. Glaub, A. R. Burke, C. R. Brown, William E. Moddeman, W. C. Bowling, R. B. Whitaker, D. Kapsch |
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Rok vydání: | 1988 |
Předmět: |
Inert
Exothermic reaction Materials science Oxide chemistry.chemical_element Surfaces and Interfaces General Chemistry Condensed Matter Physics Energetic material Surfaces Coatings and Films law.invention Titanium powder Ignition system chemistry.chemical_compound Chemical engineering chemistry law Materials Chemistry Boron Titanium |
Zdroj: | Surface and Interface Analysis. 11:353-358 |
ISSN: | 1096-9918 0142-2421 |
DOI: | 10.1002/sia.740110614 |
Popis: | Titanium–boron pyrotechnic reactions are essentially gasless, are very exothermic, and are known to initiate only at extremely high temperatures. The reactants are stable in normal laboratory environments and require no special sample handling, such as inert storage. These factors make the titanium–boron mixture ideal for one-shot thermal heat source applications. Mound has been investigating energetic material ignition properties for a number of years. Pyrotechnic mixtures of TiHx/KClO4 have revealed that the surface composition of the titanium fuel was TiO2 and its presence on the fuel's surface controls the TiHx + KClO4 reaction. In the present study the surface chemistry of titanium and of boron have been examined before ignition. To understand the effect of temperature on the reactants and the mixture, titanium powder, boron powder, and blends were analyzed at ambient and elevated temperatures. XPS, TG and DTA results presented will show that the oxide on boron is the controlling factor in the ignition mechanism of the titanium–boron pyrotechnic reaction. |
Databáze: | OpenAIRE |
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