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Mechanical properties and aging behavior of ultrafine grained Al-Ag alloy fabricated by accumulative roll-bonding

机译:累积轧制法制备超细晶粒Al-Ag合金的力学性能和时效行为

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Accumulative roll-bonding (ARB) process is one of the severe plastic deformation processes for fabricating ultrafine grained materials that exhibit high strength. In aluminum alloys, aging heat treatment has been an important process for hardening materials. In order to achieve good mechanical properties through the combination of grain refinement hardening and precipitation hardening, an Al-4.2wt%Ag binary alloy was used in the present study. After a solution treatment at 550°C for 1.5hr, the alloy was severely deformed by the ARB process at room temperature (RT) up to 6 cycles (equivalent strain of 4.8). The specimens ARB-processed by various cycles (various strains) were subsequently aged at 100, 150,200, 250°C, and RT. The hardness of the solution treated (ST) specimen increased by aging. On the other hand, hardness of the ARB processed specimen decreased after aging at high temperatures such as 250°C. This was probably due to coarsening of precipitates or/and matrix grains. The specimen aged at lower temperature showed higher hardness. The maximum harnesses achieved by aging for the ST specimen, the specimens ARB processed by 2 cycles, 4 cycles and 6 cycles were 55HV, 71HV, 69HV and 65HV, respectively. By tensile tests it was shown that the strength increased by the ARB process though the elongation decreased significantly. However, it was found that the tensile elongation of the ARB processed specimens was improved by aging without sacrificing the strength. The results suggest that the Al-Ag alloy having large elongation as well as high strength can be realized by the combination of the ARB process for grain refinement and the subsequent aging for precipitation hardening.
机译:累积辊压结合(ARB)工艺是用于制造具有高强度的超细晶粒材料的严重塑性变形工艺之一。在铝合金中,时效热处理一直是硬化材料的重要过程。为了通过晶粒细化硬化和沉淀硬化的组合获得良好的机械性能,本研究中使用了Al-4.2wt%Ag二元合金。在550°C固溶处理1.5小时后,该合金在室温(RT)下通过ARB工艺剧烈变形,直至6个循环(等效应变为4.8)。随后将经过各种循环(各种应变)处理的样品ARB分别在100、150,200、250°C和RT下进行时效处理。经过时效处理的溶液(ST)样品的硬度会增加。另一方面,经过ARB处理的试样在诸如250℃的高温下老化后硬度降低。这可能是由于析出物或/和基体晶粒的粗化所致。在较低温度下老化的样品显示出较高的硬度。 ST样品,经过2个循环,4个循环和6个循环处理的ARB样品通过老化获得的最大线束分别为55HV,71HV,69HV和65HV。通过拉伸试验表明,尽管伸长率显着降低,但通过ARB工艺可以提高强度。然而,发现在不牺牲强度的情况下通过时效改善了ARB处理的样品的拉伸伸长率。结果表明,通过将ARB工艺细化和随后的时效沉淀硬化相结合,可以实现具有大的伸长率和高强度的Al-Ag合金。

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