A study of the properties and development in technology for obtaining multi-component systems of particle reinforced aluminum and titanium alloys

O. Gumen, I. Selina, M. Kruzhkova
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引用次数: 1

Abstract

Abstract The article analyzes the groundwork on the influence of alloying contaminants on the structure and mechanical properties of aluminum alloys. Aluminum has become widely used in various parts of machine-building due to its physical properties. However, the main task of modern material science is to increase the strength of aluminum alloys. Therefore, today there is the development of materials and alloys based on aluminum with alloying constituents (copper, silicon, magnesium, zinc, mangan), which are administered in aluminum mainly to increase its strength. Especially attractive are properties of aluminum-doped by transition metals, in particular scandium, zirconium, iron, etc. Finally, conclusions are drawn in order to develop a material based on aluminum with increased hardness, durability, and crack resistance.
颗粒增强铝钛合金多组分体系的性能及制备技术进展
摘要:本文分析了合金污染物对铝合金组织和力学性能影响的研究基础。由于铝的物理特性,它已广泛应用于机械制造的各个部件。然而,现代材料科学的主要任务是提高铝合金的强度。因此,今天开发了以铝为基础的材料和合金,其中含有合金成分(铜,硅,镁,锌,锰),这些成分主要用于铝中以增加其强度。特别吸引人的是过渡金属,特别是钪、锆、铁等掺杂铝的性能。最后,得出结论,以便开发一种基于铝的材料,具有更高的硬度,耐久性和抗裂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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