INVESTIGATION OF INFLUENCE OF PLASMOCHEMICAL MODIFICATION ON MACRO- AND MICROSTRUCTURE OF SURFACE LAYER OF AUTOCLAVE WALL MATERIALS

N. Bondarenko, D. Bondarenko, N. Burlakov, L. Bragina
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引用次数: 4

Abstract

studies of the high-temperature effect of a plasma torch on the formation of a multilayer structure of the protective and decorative coating of autoclave wall materials are presented. The tasks of the work included studies: a temperature gradient in a multilayer protective-decorative coating; chemical composition of the fused, intermediate and deep layers of the protective and decorative coating; influence of sodium liquid glass on the formation of macro- and microstructures of protective and decorative coatings under the influence of plasma; processes of thermal diffusion and redistribution of oxides in the fused, intermediate and deep layers. It was found that when the plasma torch was treated with autoclave wall materials, the surface layer was heated to a depth of 3000 μm, and the maximum surface temperature reached 2000 °C. The pattern of the change in the structure of the fused and intermediate layer is revealed. It is shown that the preliminary impregnation of the surface of silica brick during plasma treatment due to the formation of a low-melting melt eliminates microcracks in its deep layers, and high plasma temperatures promote intensive evaporation of sodium and calcium oxides from the fused layer.
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等离子体化学改性对热压釜壁材表层宏观和微观结构影响的研究
研究了等离子炬对热压釜壁材保护和装饰涂层多层结构形成的影响。工作任务包括研究:多层保护装饰涂层的温度梯度;所述保护和装饰涂层的熔合层、中间层和深层的化学成分;等离子体作用下钠液玻璃对防护和装饰涂层宏观和微观结构形成的影响氧化物在熔合层、中间层和深层的热扩散和重分布过程。结果表明:等离子炬与热压釜壁材处理时,表面加热深度为3000 μm,表面最高温度可达2000℃;揭示了熔合层和中间层的结构变化规律。结果表明,在等离子体处理过程中,由于低熔点熔体的形成,硅砖表面的初步浸渍消除了其深层的微裂纹,高等离子体温度促进了熔融层中钠和钙的氧化物的密集蒸发。
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