MHD -等离子体熔体工艺对铸铝合金A390组织性能的影响

A. Narivsky, O. Smirnov, V. Panarin, Yu.P. Skorobagatko, M. Goryuk, V. O. Tverdokhvalov, V.M. Lomakin
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引用次数: 0

摘要

铸造产品产量的增长和企业降低金属产品制造成本的愿望,导致对铝合金的结构和性能的要求显著增加。在液相制备阶段,合金的物理力学性能的提高是最有效的。因此,可以通过外部作用于合金、从气体和有害杂质中深度精炼、合金的活性改性、减少或消除电荷材料遗传的负面影响来有效地影响铸造金属的质量。使用改性剂对合金进行组织细化的主要缺点是结果不稳定,这是由多种原因造成的。其中最重要的原因之一是为熔体中活性改性剂颗粒的形成和保存提供了条件。它们在结晶时被液态合金同化并作用于晶核。已知随着结扎剂加入熔体的颗粒总数中,只有~10%的颗粒是有活性的。其他颗粒溶解在熔体中,被结晶前沿带走,或被推回晶间边界。所考虑的电磁,MHD和等离子体作用于液态金属的方法允许在不使用特殊试剂的情况下精炼和修饰合金。本文采用等离子体氩射流和交变电磁场-磁流体力学(MHD)效应,包括同时作用的方法,研究了铸造磁动力装置(MDI)处理后的超共晶硅明A390的组织和性能。建立了液相过共晶硅A390的mhd等离子体处理的科学技术基础和实现该工艺的原始设备。它提供了凝固合金的分散组织。因此,初生硅晶粒尺寸和α-铝固溶体枝晶尺寸均明显减小。合金的强度特性提高到10%,延伸率提高1.5-2倍。关键词:等离子体射流,磁动力装置,铝合金,力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of MHD - plasma melt processing on the structure and properties of cast aluminum alloy A390
Growth of production of cast products and the desire of enterprises to reduce the cost of manufacturing metal products led to a significant increase in requirements for the structure and properties of aluminum alloys. Increasing of physical and mechanical properties of alloys is most effectively at the stages of their preparation in liquid state. At that, it is possible to affect effectively on the quality of cast metal by external actions on alloys, deep refining from gases and harmful impurities, active modifying of alloy, reducing or eliminating the negative impact of heredity of charge materials. The main disadvantage of the processes of structure refinement of alloys by using modifiers is instability of their results, which depends on various reasons. One of the most important reasons is providing conditions for the formation and preservation of active modifier particles in the melt volume. They are assimilating by liquid alloy and acting on crystal nucleus at crystallization. It is known that only ~10% particles are active of the total number of particles added with the ligature into the melt. Other particles dissolve in the melt, take away by the crystallization front, or push back on to intergranular boundaries. The considered methods of electromagnetic, MHD and plasma actions on liquid metal allow to refine and modify alloys without use of special reagents. The paper presents studying of the structure and properties of supereutectic silumin A390 after treatment in casting magnetodynamic installation (MDI) by submerged into melt the plasma argon jet and alternating electromagnetic field & magnetohydrodynamic (MHD) effects, including simultaneous combination. There are developed the scientific and technological bases of MHD-plasma processing of liquid hypereutectic silumin A390 and original equipment for their realization. It provides dispersed structure of solidified alloy. Thus, there is a significant decreasing of sizes both particles of primary silicon and dendrites of α-solid solution of aluminium. Also, strength characteristics of alloys increased to 10%, and elongation rises up in 1.5-2 times. Keywords: plasma jet, magnetodynamic installation (MDI), aluminum alloy, mechanical properties.
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