首页> 外文会议>International Conference on Aluminum Alloys >EFFECTS OF MICROALLOYING ELEMENTS (Cu, Ag) ON NANOCLUSTER FORMATION AND AGE-HARDENING BEHAVIOR IN Al-Mg-Si ALLOYS
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EFFECTS OF MICROALLOYING ELEMENTS (Cu, Ag) ON NANOCLUSTER FORMATION AND AGE-HARDENING BEHAVIOR IN Al-Mg-Si ALLOYS

机译:微合金元素(Cu,Ag)对Al-Mg-Si合金中纳米簇形成和年龄硬化行为的影响

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摘要

Two types of nanoclusters playing an important role in the age-hardening behavior of Al-Mg- Si alloys are detected through differential scanning calorimetry measurements in the Base, Cuadded, Ag-added and Cu-Ag added alloys. The formation of Cluster (2) during aging at 100°Csuppresses the formation of Cluster (1) during a subsequent natural aging resulting in an enhancement of the age-hardening behavior during a final aging at 170°C. Furthermore, low additions of Cu and Ag clearly enhance the precipitation hardening, as demonstrated by the hardness measurements. Higher precipitate numbers in the pre-aged specimens as compared with the naturally-aged ones were confirmed using transmission electron microscopy (TEM). The effects of low Cu and Ag additions on the nanocluster formation during the low temperature aging and the age-hardening behavior during the multi-step aging are discussed based on the age-hardening phenomena.
机译:通过碱基,Cuadded,Ag加入和Cu-Ag加入合金的差示扫描量热法测量,检测到在Al-Mg-Si合金的年龄硬化行为中发挥重要作用的两种类型的纳米能器。在100℃的老化期间形成簇(2),在随后的天然老龄化期间形成簇(1),导致在170℃的最终老化期间增强年龄硬化行为。此外,低添加Cu和Ag清除沉淀硬化,如硬度测量所证明。使用透射电子显微镜(TEM)确认,与天然老化的样品中更高的沉淀数。基于年龄硬化现象,讨论了低温老化期间纳米簇形成的低Cu和Ag的影响和多步老化期间的年龄 - 硬化行为。

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