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The Process of Nanostructuring of Metal (Iron) Matrix in Composite Materials for Directional Control of the Mechanical Properties

机译:复合材料中金属(铁)基体的纳米结构化过程以控制机械性能

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摘要

We justified theoretical and experimental bases of synthesis of new class of highly nanostructured composite nanomaterials based on metal matrix with titanium carbide nanowires as dispersed phase. A new combined method for obtaining of metal iron-based composite materials comprising the powder metallurgy processes and the surface design of the dispersed phase is considered. The following stages of material synthesis are investigated: (1) preparation of porous metal matrix; (2) surface structuring of the porous metal matrix by TiC nanowires; (3) pressing and sintering to give solid metal composite nanostructured materials based on iron with TiC nanostructures with size 1–50 nm. This material can be represented as the material type “frame in the frame” that represents iron metal frame reinforcing the frame of different chemical compositions based on TiC. Study of material functional properties showed that the mechanical properties of composite materials based on iron with TiC dispersed phase despite the presence of residual porosity are comparable to the properties of the best grades of steel containing expensive dopants and obtained by molding. This will solve the problem of developing a new generation of nanostructured metal (iron-based) materials with improved mechanical properties for the different areas of technology.
机译:我们为合成以碳化钛纳米线为分散相的金属基体为基础的新型新型高纳米结构复合纳米材料的合成提供了理论和实验依据。考虑了一种新的组合的获得金属铁基复合材料的方法,该方法包括粉末冶金工艺和分散相的表面设计。研究了材料合成的以下阶段:(1)制备多孔金属基体; (2)通过TiC纳米线对多孔金属基质进行表面结构化; (3)压制和烧结,得到具有TiC纳米结构的铁基固态金属复合纳米结构材料,尺寸为1-50–nm。可以将这种材料表示为“框架中的框架”材料类型,该框架表示基于TiC增强不同化学成分的框架的铁金属框架。材料功能特性的研究表明,尽管存在残余孔隙度,但具有TiC分散相的铁基复合材料的机械性能与包含昂贵掺杂剂并通过模塑获得的最佳等级钢的性能相当。这将解决开发针对不同技术领域具有改善的机械性能的新一代纳米结构金属(铁基)材料的问题。

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