The structure, phase composition and properties of the AK12M2MgN alloy with increased iron content treated in the liquid state with an electric current

А. Prіgunova, Y. Zhydkov, V. D. Babiuk
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引用次数: 0

Abstract

The possibility of replacing the piston eutectic alloy of the Al-Si-Cu system AK12M2MgN, which was produced at OJSC "Zaporizhsky Aluminum Combine" from primary aluminum, with AK12M2MgNZH with an increased iron content, which will allow expanding the raw material base of production due to the use of scrap and waste. It is proposed to solve this problem by introducing into the technological process of processing the melt with a unipolar pulsed electric current during pouring according to specially developed modes. To investigate this possibility, experiments were conducted on the effect of electric current on the microstructure, phase composition of AK12M2MgN and AK12M2MgNZH alloys and their mechanical properties at temperatures of 20 oC and 300 oC. The melt was treated with an electric current in the following modes: electric current density (j) 100 - 400 A/cm2, pulse frequency (ν) 50 - 2000 Hz. The phase composition of alloys is considered. It is shown that the main iron-containing phase of the AK12M2MgN alloy is (Fe,Mn)3Si2AI15 (α) in the form of branched eutectic crystals. The acicular β-FeSiAI5 phase is practically absent. Unlike AK12M2MgN, the composition of AK12M2MgNZH alloy includes β-FeSiAl5 intermetallic and primary coarse crystals of (Fe,Mn)3Si2AI15 phase. After treatment of alloys in the liquid state with pulsed electric current in different modes, their microstructure and phase composition change significantly. The degree of differentiation of eutectic components increases. In particular, the linear size of eutectic silicon crystals, depending on the density and frequency of the electric current, decreases by 2-3 times. Primary crystals of the intermetallic (Fe,Mn)3Si2Al15 are formed in the AK12M2MgN alloy, which in cross-section have the appearance of compact, close to globular crystals. X-ray spectral studies have shown that despite the same crystallographic structure, eutectic and primary crystals of the (Fe,Mn)3Si2Al15 phase differ in the higher concentration of iron, manganese, copper and nickel in the latter. In the composition of the AK12M2MgNZH alloy, there is practically no acicular intermetallic β-FeSiAl5, the formation of which is one of the main reasons for the decrease in mechanical properties. Similar to the AK12M2MgN alloy, compact crystals of the primary phase (Fe,Mn)3Si2Al15 and a significant amount of the π-FeMg3Si6Al8 phase appear. Such structural changes ensured an increase in the mechanical properties at 20 and 300 oC of both the AK12M2MgN alloy and AK12M2MgNZH. The highest properties of both alloys are achieved at j = 100 A/cm2; ν = 1000 ‒ 2000 Hz. The characteristics of mechanical properties increase from 25 % to 40 %. The structural and phase changes caused by the processing of the AK12M2MgNZH melt with an electric current according to experimentally established modes provide it with mechanical properties at the level of the AK12M2MgN alloy with several higher heat resistance indicators. In addition, treatment of the melt with electric current allows to reduce the consumption of sodium-potassium fluxes by 15-50%; time of heat treatment for T1 from 10-12 hours. up to 2-3 hours.
电流液态处理的含铁量增加的AK12M2MgN合金的组织、相组成和性能
用含铁量增加的AK12M2MgNZH替代在OJSC“Zaporizhsky Aluminum Combine”由原铝生产的Al-Si-Cu系统的活塞共晶合金AK12M2MngN的可能性,这将允许由于使用废料和废物而扩大生产的原材料基础。为了解决这一问题,建议根据专门开发的模式,在浇注过程中引入单极脉冲电流处理熔体的工艺过程。为了研究这种可能性,在20℃和300℃的温度下,对电流对AK12M2MgN和AK12M2Mg NZH合金的微观结构、相组成及其机械性能的影响进行了实验。用以下模式的电流处理熔体:电流密度(j)100-400 A/cm2,脉冲频率(Γ)50-2000 Hz。考虑了合金的相组成。结果表明,AK12M2MgN合金的主要含铁相为(Fe,Mn)3Si2AI15(α),呈支链共晶形式。针状的β-FeSiAI5相实际上是不存在的。与AK12M2MgN不同,AK12M2Mg NZH合金的成分包括β-FeSiAl5金属间化合物和(Fe,Mn)3Si2AI15相的初级粗晶。用不同模式的脉冲电流处理液态合金后,其微观结构和相组成发生了显著变化。共晶成分的分化程度增加。特别地,根据电流的密度和频率,共晶硅晶体的线性尺寸减小2-3倍。金属间化合物(Fe,Mn)3Si2Al15的初级晶体形成在AK12M2MgN合金中,其横截面具有紧密的、接近球状晶体的外观。X射线光谱研究表明,尽管具有相同的晶体结构,(Fe,Mn)3Si2Al15相的共晶和初生晶体的不同之处在于后者中铁、锰、铜和镍的浓度较高。在AK12M2MgNZH合金的成分中,实际上不存在针状金属间化合物β-FeSiAl5,其形成是力学性能下降的主要原因之一。与AK12M2MgN合金类似,出现了初级相(Fe,Mn)3Si2Al15的致密晶体和大量的π-FeMg3Si6Al8相。这种结构变化确保了AK12M2MgN合金和AK12M2MngNZH在20℃和300℃下的机械性能的提高。两种合金的最高性能在j=100A/cm2时实现;v=1000-2000赫兹。机械性能的特性从25%提高到40%。根据实验建立的模式,用电流处理AK12M2MgNZH熔体所引起的结构和相变为其提供了AK12M2MngN合金水平的机械性能,并具有几个更高的耐热性指标。此外,用电流处理熔体可以将钠钾熔剂的消耗减少15-50%;T1的热处理时间为10-12小时。长达2-3小时。
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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