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Structure and Properties of Reinforced Ceramic Materials Produced by Directional Solidification

机译:方向凝固生产增强陶瓷材料的结构与性能

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The paper describes advances in a promising area for the development of Samsonov's scientific school at the Igor Sikorsky Kyiv Polytechnic Institute. The main results are provided to refine the mechanisms whereby crystals nucleate and grow from melts of eutectic alloys and acquire their microstructure and phase composition and the mechanisms whereby reinforced composite materials with isotropic and anisotropic microstructure are strengthened for extreme applications involving high-speed heating and cooling, impact interaction, cyclic loading, and corrosive environments. The mechanical properties of reinforced composite materials in a wide temperature range are presented. Areas for application of the reinforced ceramics are identified.
机译:本文介绍了在Igor Sikorsky Kyiv理工学院发展萨申夫科学学校发展的有希望的领域的进步。 提供主要结果以优化晶体成核的机制并从共晶合金的熔体生长并获得它们的微观结构和相组合物,并加强了具有各向同性和各向异性微观结构的增强复合材料的机理,用于涉及高速加热和冷却的极端应用。 ,影响相互作用,循环加载和腐蚀环境。 提出了宽温度范围内增强复合材料的机械性能。 鉴定了用于施加增强陶瓷的区域。

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