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首页> 外文期刊>Journal of Materials Science >Improvement of strength and ductility for a 6056 aluminum alloy achieved by a combination of equal-channel angular pressing and aging treatment
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Improvement of strength and ductility for a 6056 aluminum alloy achieved by a combination of equal-channel angular pressing and aging treatment

机译:通过等通道角压和时效处理相结合,可提高6056铝合金的强度和延展性

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摘要

Incited by the aim of improving the strength and preserving a moderate ductility, the promising approach of a combined equal-channel angular pressing (ECAP) and aging treatment was applied to the 6056 Al-Mg-Si-(Cu) alloy. This method has been proven to be most effective for a small number of ECAP passes in the solid-solution condition and a following aging treatment, which is timed to enable precipitation hardening up to the peak strength on the one hand and microstructural recovery just before the onset of softening on the other hand. In this work, the evolution of hardness during post-ECAP aging and the effect of aging temperature and time on strength and ductility will be discussed. By means of low-voltage scanning transmission electron microscopy, the underlying microstructural features in terms of dislocation structure and precipitation characteristics will be presented. It has been found that peak aging especially at low-aging temperatures is suitable for achieving the desired high-strength combination, whereas-on the expense of some percent in the strengthening-the ductility is best in slightly underaged conditions. Compared to the initial peak-aged condition, an increase in strength of 27%, combined with a moderate ductility of 6.5% uniform elongation was achieved for peak aging at 150 °C after two passes of ECAP.
机译:出于提高强度和保持适度延展性的目的,对6056 Al-Mg-Si-(Cu)合金采用了一种有前途的等通道角向压制(ECAP)和时效处理相结合的方法。事实证明,该方法对于固溶条件下的少量ECAP通过和随后的时效处理最为有效,该时效处理的目的是一方面使沉淀硬化至峰值强度,并能在刚进行前进行微观结构恢复。另一方面开始软化。在这项工作中,将讨论ECAP后老化过程中硬度的变化以及老化温度和时间对强度和延展性的影响。借助低压扫描透射电子显微镜,将介绍位错结构和析出特性方面的潜在微观结构特征。已经发现,峰值时效,特别是在低时效温度下的峰值时效,适合于实现所需的高强度组合,而以牺牲一定百分比的强度为代价,延性最好在稍稍老化的条件下进行。与最初的峰值时效条件相比,在两次ECAP通过后,在150°C时的峰值时效强度提高了27%,延展性达到了6.5%的中等伸长率。

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