Thermal treatment effect on the mechanical properties of 1570, 1580 and 1590 aluminum alloys

E. V. Aryshensky, V. Aryshensky, A. Drits, F. Grechnikov, A. A. Ragazin
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Abstract

The study addresses the effect of thermal treatment on the mechanical properties and grain size of magnesium rich alloys with small scandium additions 1570, 1580 and 1590. The effect of preheat temperature (within 260440 С range) and soaking time (within 2 100 hours range) on yield strength, tensile strength and relative elongation of the alloys under investigation was analyzed. Mechanical properties were determined using uniaxial tensile tests in accordance with ISO 6892-1. In addition, for some modes the microstructure was studied for Al3Mg2 -phase presence and distribution by optical metallography methods depending on thermal treatment conditions. The studies demonstrated that supersaturated solid solution in the 1570 alloy decomposes faster in the entire studied temperature range, and after 48 hours soaking, its strength properties start degrading. At the same time, the 1580 and 1590 alloys are much more thermally stable, with slightly lower yield strength after long soaking time, while tensile strength remains unchanged. The conditions of 260 C annealing temperature are not favorable for plastic properties, severely degrading (due to -phase formation) in the 1570 and 1580 alloys. Plastic properties degradation is not so evident at higher soaking temperature, however, the 1590 alloy maintains the highest plasticity indices.
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热处理对1570、1580和1590铝合金力学性能的影响
研究了热处理对1570、1580和1590三种微量钪富镁合金力学性能和晶粒尺寸的影响。分析了预热温度(260440 С范围内)和保温时间(2100 h范围内)对合金屈服强度、抗拉强度和相对延伸率的影响。机械性能根据ISO 6892-1采用单轴拉伸试验测定。此外,利用光学金相方法研究了不同热处理条件下某些模式下Al3Mg2相的存在和分布。研究表明,1570合金中过饱和固溶体在整个温度范围内分解速度较快,浸泡48 h后,其强度性能开始退化。同时,1580和1590合金的热稳定性好得多,长时间浸泡后屈服强度略有下降,而抗拉强度保持不变。260℃的退火温度对1570和1580合金的塑性性能不利,严重退化(由于-相的形成)。在较高的浸泡温度下,1590合金的塑性性能下降不明显,但塑性指标保持最高。
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