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首页> 外文期刊>Materials science forum >Effect of Pre-Straining and Natural Aging on the Hardening Response during Artificial Aging of EN AW 6082 and Lead Free EN AW 6023 Aluminium Alloys
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Effect of Pre-Straining and Natural Aging on the Hardening Response during Artificial Aging of EN AW 6082 and Lead Free EN AW 6023 Aluminium Alloys

机译:预压和自然老化对腹腹6082人工老化抗干响应的影响,无铅EN 6023铝合金

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摘要

In order to study the pre-straining and natural aging effects on the age-hardening response of EN AW 6082 and EN AW 6023 aluminium alloys during artificial aging at 170°C, the prestraining to 5% was performed immediately after solution treatment of alloys at 550°C and subsequent quenching. The age-hardening response during artificial aging applied after various natural aging time (from 0.1 to 5 000 hours) was investigated using Vickers microhardness measurements and transmission electron microscopy characterization. It was found that prestraining of quenched alloys state led to the increase of dislocation density in solid solution, which resulted in an immediate microhardness increase of alloys. During the subsequent natural aging of EN AW 6082 alloy, its microhardness increased right after alloy quenching and pre-straining, but only to the values obtained for the un-deformed alloy state. On the contrary, the hardness of pre-strained EN AW 6023 alloy that is alloyed by Sn did not increase either after 10 hours of natural aging. This phenomenon is attributed to the effect of Sn on suppression of the strengthening clusters formation. The hardness of alloys increased greatly during artificial aging after pre-straining and natural aging due to accelerating the formation of coherent p"-phase particles. The negative effect of natural aging on the maximum age-hardening response obtained during alloys artificial aging had been observed for most of the pre-strained and naturally aged alloys states, with exception of EN AW 6023 alloy states that were pre-strained and shortly naturally aged (up to 100 hours).
机译:为了研究在170℃的人工老化期间对EN AW 6082和ZH AW 6023铝合金的预压和天然老化作用,在溶液处理后立即进行肺部至5% 550°C和随后的淬火。使用Vickers Micro硬度测量和透射电子显微镜表征研究在各种天然老化时间(0.1至5 000小时)后施加人工老化期间的硬化响应。结果发现,淬火合金状态的抗悬浮态导致固体溶液中位错密度的增加,从而导致合金的即时微硬度增加。在随后的腹膜6082合金的自然老化期间,其微硬度在合金淬火和预脉冲后的右侧增加,但仅对为不变形合金状​​态获得的值。相反,通过Sn合金化的预束缚EN 6023合金的硬度在10小时的天然老化后没有增加。这种现象归因于Sn对强化簇形成的抑制的影响。在预压和自然衰老后,合金的硬度大大增加,因为加速了相干的p“蛋白颗粒的形成。观察到在合金人造老龄化期间获得的最大年龄硬化反应的天然老化的负面影响对于大多数预紧张和天然老化的合金状态,除了预先应变和不久的年龄(最多100小时)的en AW 6023合金状态。

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  • 来源
    《Materials science forum》 |2019年第2019期|82-91|共10页
  • 作者单位

    Technical University of Kosice Faculty of Materials Metallurgy and Recycling Institute of Materials and Quality Engineering Letna 9 042 00 Kosice Slovakia;

    Technical University of Kosice Faculty of Materials Metallurgy and Recycling Institute of Materials and Quality Engineering Letna 9 042 00 Kosice Slovakia;

    Technical University of Kosice Faculty of Materials Metallurgy and Recycling Institute of Materials and Quality Engineering Letna 9 042 00 Kosice Slovakia;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    AIMgSi alloy, prestraining, natural aging, artificial aging, microstructure, hardness, Sn;

    机译:Amimgsi合金;普鲁斯;天然老化;人工老化;微观结构;硬度;Sn;

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