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首页> 外文期刊>Letters on Materials >Microstructural saturation, hardness stability and superplasticity in ultrafine-grained metals processed by a combination of severe plastic deformation techniques
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Microstructural saturation, hardness stability and superplasticity in ultrafine-grained metals processed by a combination of severe plastic deformation techniques

机译:结合严格塑性变形技术加工的超细晶粒金属的显微组织饱和度,硬度稳定性和超塑性

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摘要

A commercial Al-7075 aluminum alloy was used to investigate the significance of the saturation hardness and saturation microstructure after processing by high-pressure torsion (HPT) through up to 20 turns or a combination of equal-channel angular pressing (ECAP) for 4 or 8 passes and HPT. The results show additional grain refinement by initially processing the material by ECAP to produce an ultrafine grain size before conducting the HPT. Thus, the grain size immediately prior to the HPT processing controls the saturation microstructure and hardness. Microstructural images reveal a significant grain refinement from elongated grains in the samples prior to processing with an average grain diameter of ~8 μm to equiaxed grains with an average grain size of ~200 nm after processing by a combination of ECAP for 8 passes and HPT through 20 turns. This grain refinement leads to an improvement in the mechanical properties of the Al-7075 alloy. Vickers microhardness tests show a significant increase in the microhardness values of the Al-7075 alloy from Hv≈102 in the annealed samples to Hv≈270 after processing by a combination of ECAP for 8 passes and HPT through 20 turns. Specimens processed by a combination of ECAP and HPT also exhibit excellent superplastic properties with elongations up to 1000% at 673 K.
机译:使用商业化的Al-7075铝合金来研究在经过多达20圈的高压扭力(HPT)或等通道角向挤压(ECAP)的组合进行4或20次高压加工后的饱和硬度和饱和显微组织的重要性。 8关和HPT。结果表明,在进行HPT之前,通过ECAP首先加工材料以产生超细晶粒尺寸,可以进一步细化晶粒。因此,紧接在HPT处理之前的晶粒尺寸控制着饱和微结构和硬度。显微组织图像显示,通过将ECAP加工8遍和HPT加工相结合,可以将样品中的拉长晶粒从平均晶粒直径〜8μm加工到等轴晶粒平均晶粒度〜200 nm的晶粒细化。 20转这种晶粒细化导致Al-7075合金的机械性能得到改善。维氏显微硬度测试表明,经过ECAP加工8遍和HPT加工20圈后,Al-7075合金的显微硬度值从退火样品中的Hv≈102显着增加到Hv≈270。通过ECAP和HPT组合处理的样品还表现出出色的超塑性,在673 K时的伸长率高达> 1000%。

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