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Self-propagating high-temperature synthesis --- Research --- History.
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This e-book is a short history of self-propagating high-temperature synthesis (SHS) of inorganic materials and substances. The author considers distinct features of the research work of the most active groups along with their important scientific and practical achievements. The main result of these efforts is the appearance a new field of knowledge on the boundary between combustion science and materials science. The book is written in an original manner which combines the description of the scientific results with interesting stories about various episodes accompanying development of signific
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Ceramic materials. --- Armor-plate --- Self-propagating high-temperature synthesis. --- Materials.
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Ceramic materials. --- Armor-plate --- Self-propagating high-temperature synthesis. --- Materials.
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Self-propagating high-temperature synthesis. --- Titanium diboride --- Titanium carbide --- Explosive compacting. --- Synthesis.
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""Combustion Synthesis"" covers a wide range of technologies to produce advanced materials, ranging from oxides, nitrides and intermetallics to various nanostructured compounds, such as nanopowders and carbon nano tubes (CNT). This Ebook, with contributions from leading experts in industry and academia, provides an up-to-date overview about combustion synthesis. A comparison to conventional methods as well as a description of analytical techniques is given, alongside the description of special techniques, such as microwave or electrical field assistance. Aspects such as historic development an
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This translation from the original Russian book outlines the production of a variety of materials by methods of self-propagating high-temperature synthesis (SHS). The types of materials discussed include: hard, refractory, corrosion and wear-resistant materials, as well as other advanced and speciality materials. The authors address the issue of optimal parameters for SHS reactions occurring during processes involving a preliminary metallothermic reduction stage, and they calculate this using thermodynamic approaches. In order to confirm the effectiveness of this approach, the authors describe experiments focussing on the synthesis of elemental crysalline boron, boron carbides and nitrides. Other parts of this brief include theoretical and experimental results on single-stage production of hard alloys on the basis of titanium and zirconium borides, as well as macrokinetics of degassing and compaciton of SHS-products.This brief is suitable for academics, as well as those working in industrial manufacturing companies producing hard alloys and composites for making metal-working machinery or drilling equipment.
Combustion engineering. --- High temperature chemistry. --- Self-propagating high-temperature synthesis --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Materials at high temperatures. --- Intermetallic compounds --- Combustion. --- Materials science. --- Inorganic chemistry. --- Chemical engineering. --- Manufacturing industries. --- Machines. --- Tools. --- Structural materials. --- Materials Science. --- Structural Materials. --- Industrial Chemistry/Chemical Engineering. --- Inorganic Chemistry. --- Manufacturing, Machines, Tools. --- Thermochemistry --- Heat engineering --- Metals --- High temperatures --- Materials --- Strength of materials --- Materials. --- Chemistry, inorganic. --- Manufactures. --- Manufacturing, Machines, Tools, Processes. --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries --- Inorganic chemistry --- Chemistry --- Inorganic compounds --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Self-propagating high-temperature synthesis.
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