Natalіja Kalіnіna, Diana Glushkova, N. Tsokur, T. Nosova, Valerij Bagrov, S. Demchenko
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引用次数: 1

摘要

高强度铝合金微合金化和改性中钪选择的依据。研究材料为Al-Zn-Mg-Cu体系的高强度铝合金B96C1。选用钪作为微合金和改性元素。研究了Al-Sc的状态图和钪的物理力学性能。研究了含0.3%钪的B96C1合金的热处理方法。研究了改性合金的组织和力学性能。研究证实了钪在铝熔体中的微流平和改性作用,开发了钪在铝熔体中的引入技术,优化了钪的用量。AlSc合金具有显著的人工时效效果。分解过程的动力学研究表明,结晶得到的固溶体存在过饱和。在铝中钪固溶体的分解过程中,释放出稳定相的Al3Sc颗粒。在分析Al-Sc态图的基础上,选择了优化工件冷却速度的B96Ts1铝合金硬化时效均匀温度。在改性坯料中,实现了2.5次磨粒,并在保持塑性的同时保持了合金的屈服强度和屈服强度。对于铝合金B96Ts1,选择钪作为微合金化和改性元素符合其物理化学性质和铝基合金的性能是合理的。由于Al-Sc系合金的硬化,固溶体不会分解并释放出Al3Sc金属间颗粒,这是一个科学上的新发现。钪的主要作用是在铝中形成分散的钪固溶体分解产物,并在热处理后的半成品中保存了结构稳定、亚晶粒小的结构,从而提高了强度性能。在工件热处理的熔体和温度-时间参数中引入扫描作用技术的建立,使B96Ts1合金具有分散的组织和较高的力学性能,具有一定的实用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Обґрунтування вибору скандію для мікролегування високоміцних алюмінієвих сплавів
The substantiation of the scandium selection for microalloying and modifying of high-strength aluminum alloys. The research material is a high-strength aluminum alloy B96C1 of the Al-Zn-Mg-Cu system. Scandium was chosen as a microalloy and modifying element. The state diagram of Al-Sc, physical, and mechanical properties of scandium have been studied. Modes of heat treatment of B96C1 alloy with 0.3 % scandium have been developed. The structure and mechanical properties of the modified alloy were studied. The conducted complex of studies confirmed the microleveling and modifying the action of scandium in Al-melt, the technology of the introduction of scandium into melt-melt was developed, the amount of Sc was optimized. AlSc alloys have a significant effect on artificial aging. The study of the kinetics of the decomposition process showed the supersaturation of the solid solution obtained by crystallization. During the decomposition of a solid solution of scandium in aluminum, particles of the stable phase of Al3Sc are released. Based on the analysis of the Al-Sc state diagram, the homogenization temperatures of hardening and aging of the aluminum alloy B96Ts1 with optimization of the cooling rate of the workpieces were selected. In the modified blanks, grain grinding was achieved 2.5 times and the characteristics of the yield strength and yield strength of the alloy while maintaining plasticity. For aluminum alloy B96Ts1, the choice of scandium as a microalloying and modifying element is justified in terms of compliance with its physicochemical nature and properties of aluminum-based alloys. Because of hardening the alloys of the Al-Sc system, there is no decomposition of the solid solution with the release of Al3Sc intermetallic particles, which is a scientific novelty. The main effect of scandium is to increase the strength properties due to the formation of dispersed decomposition products of a solid solution of scandium in aluminum and preservation in heat-treated semi-finished products of stable structure with small subgrains. The establishment of the technology of the introduction of scan-action into the melt and temperature-time parameters of heat treatment of workpieces allowed to obtain a dispersed structure and a high set of mechanical properties of the alloy B96Ts1, which is the practical value of the work.
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