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Powder Iron-Copper Materials obtained by Liquid Infiltration: Computer Modelling and Experiment

机译:通过液体渗透获得的粉末铜材料:计算机建模和实验

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Carried out is an analysis of modern methods of production and strengthening powder iron-copper composites, studied are processes of producing materials of segregation and percolation types. Developed are methods of improving a structure and physical-mechanical properties of ironcopper composites operating in conditions of increased mechanical loadings, friction and wear, and a process of infiltration with copper melt of an iron frame and hot deforming the infiltrated billets. Found is that using infiltration enables to obtain the following properties of powder composite material containing Fe as basic component, (0.5-1.5)% C, (2-4)% Ni, (15-20)% Cu: tensile strength - 620MPa, hardness - 1400MPa, elongation - 2.5%. The additional using of hot deformation of this material enables to increase properties to the values: tensile strength 840-970MPa, hardness - 2400- 3300MPa according to the green density of the powder billet. On the basis of a plasticity theory there is developed a model of deformation of a porous compressible body, taking into account a percolation and segregation type of distributing iron and copper phase in the composite. Comparing the results of theoretical calculation of densification processes with experimental data showed satisfactory concurrence - in limits 10-15%.
机译:进行是对现代生产和加强粉末铁铜复合材料的现代方法分析,研究是生产偏析和渗滤类型的材料的过程。开发是改善在机械载荷,摩擦和磨损的条件下操作的熨斗复合材料的结构和物理机械性能的方法,以及使用铁框架的铜熔体的渗透和热变形渗透坯料的渗透过程。发现,使用渗透使得能够获得含有Fe作为碱性组分的粉末复合材料的以下性质,(0.5-1.5)%C,(2-4)%Ni,(15-20)%Cu:拉伸强度 - 620MPa,硬度 - 1400MPA,伸长 - 2.5%。使用这种材料的额外使用热变形使得能够将性能提高到值:拉伸强度840-970MPa,硬度根据粉末坯料的绿色密度,硬度 - 2400-3300MPa。在塑性理论的基础上,开发了多孔可压缩体的变形模型,考虑到复合材料中的渗透和分离类型的分配铁和铜相的渗透和分离类型。比较实验数据的致密化过程的理论计算结果表现出令人满意的并发 - 限制10-15%。

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