Study of evolution of microstructure and mechanical properties in aluminum alloy 1570 with the addition of 0.5 % hafnium

Igor Zorin, E. Aryshenskii, Aleksandr Drits, Sergey Konovlov
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Abstract

Introduction. Aluminum alloys are in high demand with the aerospace industry. From the viewpoint of various performance characteristic combinations, high-magnesium aluminum alloys with the addition of transition metals, such as Zr and Sc, are among the most future-oriented alloys. Alloy 1570 is one of the most popular in this group. Recent studies demonstrated the positive effect of 0.5 % hafnium addition on as-cast structure. Study objective is to study the effect of the addition of 0.5% hafnium on the structure and properties of aluminum alloy 1570 during thermomechanical treatment. The study addresses the effect of cold rolling, homogenization, and recrystallization annealing on mechanical properties and microstructure of the specimens from alloy 1570 and similar alloy with 0.5 wt. % hafnium addition. Study methodology: for the study, ingots were cast from alloy 1570 with and without additions of 0.5 wt. % of hafnium. The resulting ingots were homogenized for 4 h at 440 °С, followed first by hot rolling and then cold rolling. Cold-rolled specimens were annealed at temperatures 340 °С to 530 °С with a holding time of 3 hours. The homogenized, cold-rolled, and annealed specimens were examined using transmission and light microscopy. In addition, homogenized and cold-rolled specimens were subjected to uniaxial tensile tests to determine the mechanical properties of the studied alloy. Results and discussion. It is revealed that in an alloy containing hafnium, after homogenization annealing, there is a slight decrease in the average particle size and an increase in its total proportion in comparison with alloy 1570. In general, 0.5 % hafnium addition does not significantly affect the mechanical properties. The number of nanoparticles in both alloys increases, as does the yield strength compared to the as-cast state. When heated, both alloys demonstrate an increase in plasticity and a decrease in strength characteristics. Studies of the annealing effect on the grain structure of the studied alloys showed that hafnium increases the tendency of alloy 1570 to recrystallize. However, additional research is required to determine the reasons for this phenomenon.
添加 0.5 % 铪后铝合金 1570 的微观结构和机械性能演变研究
简介。铝合金在航空航天工业中需求量很大。从各种性能特征组合的角度来看,添加了 Zr 和 Sc 等过渡金属的高镁铝合金是最具发展前景的合金之一。合金 1570 就是这一类合金中最受欢迎的一种。最近的研究表明,添加 0.5 % 的铪对铸件结构有积极影响。本研究的目的是研究在热机械处理过程中添加 0.5% 的铪对铝合金 1570 的结构和性能的影响。研究涉及冷轧、均质化和再结晶退火对合金 1570 和添加 0.5 wt. % 铪的类似合金试样的机械性能和微观结构的影响。研究方法:在研究中,用添加和未添加 0.5 重量%铪的 1570 合金铸造铸锭。铸锭在 440 °С 下均质 4 小时,然后先热轧,再冷轧。冷轧试样在 340 °С 至 530 °С 温度下退火,保温时间为 3 小时。使用透射显微镜和光学显微镜对均质、冷轧和退火试样进行检查。此外,还对均质和冷轧试样进行了单轴拉伸试验,以确定所研究合金的机械性能。结果与讨论结果表明,与合金 1570 相比,含铪的合金在均质退火后,平均粒度略有下降,总比例有所增加。一般来说,0.5% 的铪添加量不会对机械性能产生明显影响。与铸造状态相比,两种合金中的纳米颗粒数量都有所增加,屈服强度也有所增加。加热时,两种合金的塑性都会增加,强度则会降低。关于退火对所研究合金晶粒结构影响的研究表明,铪会增加合金 1570 的再结晶倾向。不过,还需要进行更多的研究来确定产生这种现象的原因。
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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