Control of the operational properties of powder materials to increase the corrosion resistance and wear resistance of parts

G. Sharipzyanova, Z. Eremeeva
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Abstract

Introduction. One of the vibration methods for processing loose finely dispersed mineral raw materials is the sepIntroduction. The quality of powder materials made of rare metals is ensured by chemical-thermal treatment, including diffusion chromosilidation. Chemical and thermal treatment of products intensifies the process of diffusion saturation, reduces the processing time and allows the use of products in aggressive and abrasive environments. Methods and materials of research. Systematization, generalization and analysis of theoretical, laboratory and experimental studies, the basis of which is the modeling of processes. Research results. It was found that when using low-alloyed powder, higher strength and viscosity indices of chromosilicated materials were obtained. It is determined that the mechanical properties of powders processed from molten salts are higher than those of materials from powder filling. It is shown that the treatment increases the corrosion resistance of iron-based powders with an established corrosion rate less than the initial one. Discussion of research results. The rapid formation of an oxide film that protects the metal from corrosion is facilitated by quenching and normalization. Porous chromosilicated layers are destroyed and impair the ability of the material to resist corrosion destruction. The operational properties of chromosilicated powders obtained by hot stamping methods increase when using rational parameters of the technological process in an optimal mode. Conclusion. The article contains new proposals for managing the properties of materials to increase corrosion resistance and wear resistance of children. Conclusions on the article. New developments can be recommended for implementation in the production of rare metals and products made from them. Suggestions. The results of the research can be used both in the modernization of production and in the training of specialists in this field.
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控制粉末材料的操作性能,以提高零件的耐腐蚀性和耐磨性
介绍sepIntroduction是一种处理松散细分散矿物原料的振动方法。由稀有金属制成的粉末材料的质量通过化学热处理来保证,包括扩散变色。产品的化学和热处理强化了扩散饱和过程,减少了处理时间,并允许在侵蚀性和研磨性环境中使用产品。研究方法和材料。理论、实验室和实验研究的系统化、概括和分析,其基础是过程建模。研究结果。研究发现,当使用低合金粉末时,铬硅酸盐材料的强度和粘度指数都较高。经测定,用熔盐加工的粉末的机械性能高于用粉末填充的材料的机械性能。结果表明,该处理提高了铁基粉末的耐腐蚀性,其既定腐蚀速率小于初始腐蚀速率。对研究结果的讨论。淬火和正火有助于快速形成保护金属免受腐蚀的氧化膜。多孔的铬硅酸盐层被破坏,并损害材料抵抗腐蚀破坏的能力。采用合理的工艺参数和优化的方式,可以提高热冲压法制备的铬硅微粉的操作性能。结论这篇文章包含了管理材料性能以提高儿童耐腐蚀性和耐磨性的新建议。文章的结论。可以建议在稀有金属及其制品的生产中实施新的发展。建议。研究结果可用于生产现代化和该领域专家的培训。
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来源期刊
Sustainable Development of Mountain Territories
Sustainable Development of Mountain Territories Social Sciences-Sociology and Political Science
CiteScore
2.40
自引率
0.00%
发文量
36
期刊介绍: International scientific journal "Sustainable development of mountain territories" covers fundamental and applied regional, national and international research and provides a platform to publish original full papers and related reviews in the following areas: engineering science and Earth science in the field of sustainable development of mountain territories. Main objectives of international scientific journal "Sustainable development of mountain territories" are: raising the level of professional scientific workers, teachers of higher educational institutions and scientific organizations; presentation of research results in the field of sustainable development of mountain areas on the technical aspects and Earth sciences, informing readers about the results of Russian and international scientific forums; improved review and editing of the articles submitted for publication; ensuring wide dissemination for the published articles in the international academic environment; encouraging dissemination and indexing of scientific works in various foreign key citation databases.
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