首页> 外文期刊>Open Journal of Metal >Experimental Investigation of the Early Stage of Precipitation on Binary Al-Li, Al-Cu Alloys and Ternary Al-Li-Cu Alloys by Means of Atom Probe Tomography
【24h】

Experimental Investigation of the Early Stage of Precipitation on Binary Al-Li, Al-Cu Alloys and Ternary Al-Li-Cu Alloys by Means of Atom Probe Tomography

机译:二原子铝锂,铝铜合金和三元铝锂铜合金早期析出的原子探针层析成像实验研究

获取原文
       

摘要

Aluminum-based alloys play a key role in modern engineering and are widely used in construction components in aircraft, automobiles and other means of transportation due to their light weight and superior mechanical properties. Introduction of different nano-structure features can improve the service and the physical properties of such alloys. An improvement of an Al-based alloy has been performed based on the understanding of the relationships among compositions, processing, microstructural characteristics and properties. Knowledge of the decomposition process of the microstructure during the precipitation reaction is particularly important for future technical developments. The objective of this study is to investigate the nano-scale chemical composition in the Al-Cu, Al-Li and Al-Li-Cu alloys during the early stage of the precipitation sequence and to describe whether this compositional difference correlates with variations in the observed precipitation kinetics. Investigation of the fine scale segregation effects of dilute solutes in aluminum alloys which were experienced different heat treatments by using atom probe tomography has been achieved. The results show that an Al-1.7 at.% Cu alloy requires a long ageing time of approximately 8 h at 160°C to allow the diffusion of Cu atoms into Al matrix. For the Al-8.2 at.% Li alloy, a combination of both the natural ageing condition (48 h at room temperature) and a short artificial ageing condition (5 min at 160°C) induces increasing on the number density of the Li clusters and hence increase number of precipitated particles. Applying this combination of natural ageing and short artificial ageing conditions onto the ternary Al-4 at.% Li-1.7 at.% Cu alloy induces the formation of a Cu-rich phase. Increasing the Li content in the ternary alloy up to 8 at.% and increasing the ageing time to 30 min resulted in the precipitation processes ending with δ' particles. Thus the results contribute to the understanding of Al-alloy design.
机译:铝基合金由于重量轻且机械性能优越,因此在现代工程中起着关键作用,并广泛用于飞机,汽车和其他运输工具的建筑部件中。引入不同的纳米结构特征可以改善此类合金的使用寿命和物理性能。基于对组成,加工,微结构特征和性能之间的关系的理解,已经对Al基合金进行了改进。沉淀反应过程中微观结构分解过程的知识对于未来的技术发展尤为重要。这项研究的目的是研究沉淀序列早期阶段的Al-Cu,Al-Li和Al-Li-Cu合金中的纳米级化学成分,并描述这种成分差异是否与合金的变化相关。观察到的沉淀动力学。通过使用原子探针层析成像技术,已经研究了经历不同热处理的铝合金中的稀溶质的细小偏析作用。结果表明,Al-1.7 at。%Cu合金在160°C下需要大约8 h的长时效时间,以允许Cu原子扩散到Al基体中。对于Al-8.2 at。%Li合金,自然时效条件(室温下48小时)和短暂的人工时效条件(在160°C下5分钟)共同导致Li团簇数密度的增加。因此增加了沉淀颗粒的数量。将自然时效和短暂的人工时效条件的这种组合应用于三元Al-4 at。%Li-1.7 at。%Cu合金可诱导形成富Cu相。将三元合金中的Li含量提高到8 at。%,并将时效时间增加到30分钟,导致沉淀过程以δ'颗粒结束。因此,结果有助于理解铝合金设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号