首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Application of PAP-2 aluminum powder to produce powdered composite materials: The features of technology, structure, and physicomechanical properties of composites. Part I. Process approaches providing the formation of composite materials and applied procedures for determining their physicomechanical properties
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Application of PAP-2 aluminum powder to produce powdered composite materials: The features of technology, structure, and physicomechanical properties of composites. Part I. Process approaches providing the formation of composite materials and applied procedures for determining their physicomechanical properties

机译:PAP-2铝粉用于生产粉末复合材料的应用:技术,结构和复合材料的物理机械性能。 第一部分。提供复合材料的形成和应用程序,用于确定其物理机构的应用方法

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摘要

Composites Al/Al2O3 (lamellar cermet matrix)-filler (discrete metallic fibers, duralumin chips, graphite particles, fused corundum grains, and technical alumina spherulites) are fabricated. To form the lamellar cermet matrix, industrially produced PAP-2 aluminum powder was used. This powder consists of scaled particles with stearin coating (the specific surface of the powder is 4.1322 m(2)/g, and its particle size varies from 0.03 to 10 mu m). In order to form the composites, the following main process operations were used: heat treatment of the PAP-2 powder in air to burn out stearin from the particle surface and replace it with a passivating alumina film, mixing of the thus formed powder product with a filler, and compaction and reaction sintering of powder billets in the filtration burning mode in air. To fabricate the Al/Al2O3-C composite, a new approach based on the saponification chemical reaction of stearin is proposed. This reaction runs between stearin on the surface of aluminum particles and caustic soda, which is the product of hydrolysis of the diluted liquid glass introduced into initial powder. The reaction products (sodium stearate and glycerol) are decomposed during the subsequent heat treatment in air with the formation of a coke residue on the particle surface. The physicochemical properties of the composites were determined using standard and conventional procedures.
机译:复合材料Al / Al2O3(层状金属纤维基质) - 填充剂(离散金属纤维,硬质烧结芯片,石墨颗粒,熔融刚玉颗粒和技术氧化铝球晶)。为了形成层状金属陶瓷基质,使用工业生产的PAP-2铝粉。该粉末由具有茎蛋白涂层的缩放颗粒(粉末的比表面为4.1322m(2)/ g,其粒度从0.03-10μm变化。为了形成复合材料,使用以下主要过程操作:使用颗粒表面烧坏蛋白碱的PAP-2粉末的热处理,并用钝化的氧化铝膜替换为如此形成的粉末产品空气中过滤燃烧模式中粉末坯料的填充物和反应烧结。为了制造Al / Al2O3-C复合材料,提出了一种基于Stearin皂化化学反应的新方法。该反应在铝颗粒表面和苛性钠表面上运行,这是稀释液体玻璃的水解产物,其引入初始粉末。在随后在空气中的热处理期间分解反应产物(硬脂酸钠和甘油),在颗粒表面上形成焦炭残留物。使用标准和常规方法测定复合材料的物理化学性质。

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