研究铪和铒含量对在铜冷模中铸造铝合金 1590 的微观结构形成的影响

A. Ragazin, V. Aryshenskii, Sergey Konovlov, E. Aryshenskii, Inzil Bakhtegareev
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引用次数: 0

摘要

简介。高镁铝合金因其比重小、强度高而广泛应用于汽车、建筑和航空航天工业。通过少量添加钪和锆,可改善此类合金的特性。然而,钪的价格非常昂贵,因此在新一代合金中,钪的用量有减少的趋势。在最近开发的 1590 铝合金中,通过添加铒和铪实现了这一目标。本文的目的是研究铒和铪的浓度对 1590 铝合金在高凝固速率下铸造结构改性的影响。研究方法。本文研究了在凝固速率为 10 °C/sec 的铜冷模中浇铸的 10 种不同铪和铒含量的 1590 合金改性试样的微观结构、化学成分和金属间化合物的尺寸。使用光学显微镜对晶粒结构进行了研究。使用 Tescan Vega 3 扫描电子显微镜研究了金属间相的化学成分和尺寸。结果和讨论。可以确定的是,随着铪和铒含量的增加,铸型结构也会发生改变。一般来说,铪和铒的添加会导致晶粒细化,这是因为固相和液相之间的过冷程度更高。当铪含量为 0.16 % 时,树枝状结构开始转变为等轴晶粒结构。这种转变可以用液相中出现的 Al3Sc 型初级金属间化合物来解释。当铒和铪的浓度等于 0.16 % 时,就能发现这种金属间化合物。此外,在所有合金中都发现了共晶金属间化合物,它们含有锰和铁,对铸件结构没有影响。与之前获得的钢模浇铸试样晶粒大小的结果进行比较后发现,随着凝固速率的提高,1590 合金的结构改性效率越来越低。这是因为固溶体中过渡元素(主要是钪)的浓度增加,而钪是形成初级金属间化合物颗粒所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of the effect of hafnium and erbium content on the formation of microstructure in aluminium alloy 1590 cast into a copper chill mold
Introduction. High-magnesium aluminum alloys are widely used in the automotive, building and aerospace industries due to its low specific gravity and high strength. The characteristics of such alloys can be improved by small additions of scandium and zirconium. However, scandium is very expensive, so in new generation alloys its amount is tended to be reduced. In the recently developed 1590 aluminum alloy, this was achieved by addition of erbium and hafnium. The objective of the paper is to study the effect of erbium and hafnium concentrations on the modification of the cast structure in 1590 aluminum alloy at high solidification rates. Research Methods. The paper investigates the microstructure, chemical composition and size of intermetallic compounds in specimens from ten alloy 1590 modifications with different hafnium and erbium contents cast into a copper chill mold with a solidification rate of 10 °C/sec. The grain structure was studied using an optical microscope. The chemical composition and size of the intermetallic phases were studied using a Tescan Vega 3 scanning electron microscope. Results and discussion. It is established that as the amount of hafnium and erbium increases, the cast structure is modified. In general, grain refinement with the addition of hafnium and erbium can be explained by a higher degree of supercooling between the solid and liquid phases. At a hafnium content of 0.16 %, the dendritic structure begins to transform into an equiaxed grain structure. This transformation can be explained by the appearance of primary intermetallic compounds of the Al3Sc type in the liquid phase. Such intermetallic compounds are identified at a concentration of erbium and hafnium equal to 0.16 %. Moreover, in all alloys eutectic intermetallic compounds are identified that contained manganese and iron and had no effect on the cast structure. Comparison with previously obtained results on the grain size of specimens cast into a steel mold shows that with higher solidification rate, the structure modification in 1590 alloy is getting less efficient. This is explained by an increase in the concentration of transition elements in the solid solution, primarily scandium, necessary for the formation of primary intermetallic particles.
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