首页> 外文期刊>Journal of nanoscience and nanotechnology >Effect of Annealing Process on Mechanical and Microstructural Properties of Al6061/Cu and Al/6063/Cu Cladding Materials Fabricated by the Caliber-Rolling Process
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Effect of Annealing Process on Mechanical and Microstructural Properties of Al6061/Cu and Al/6063/Cu Cladding Materials Fabricated by the Caliber-Rolling Process

机译:退火工艺对由钢水轧制工艺制造的Al6061 / Cu和Al / 6063 / Cu包层材料的机械和微观结构性能的影响

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摘要

Al6061/Cu and Al6063/Cu cladding materials have been produced by the caliber-rolling process at 298 K. The prepared specimen was post-annealed at a temperature of 773 K for various time durations, and the effects of annealing conditions have been investigated. Vickers hardness of Al6061, Al6063 and Cu decreases as annealing time decreases; however, that of the interface between Al alloys and Cu increases with an annealing time of 1 h, and then decreases as annealing time increases further. The growth of a diffusion layer in Al6063/Cu is larger than that in Al6061/Cu, because the activation energy in the Al6063/Cu is lower than that in Al6061/Cu during the annealing process. Cracking of the diffusion layer occurs by annealing for extended periods of time in both materials, which contributes to the decrease in hardness.
机译:通过口径轧制工艺在298k下生产Al6061 / Cu和Al6063 / Cu包层。制备的试样在773k的温度下进行两种时间持续时间,并研究了退火条件的影响。 Al6061,Al6063和Cu的维氏硬度随着退火时间降低而降低; 然而,Al合金与Cu之间的界面的界面的反弹时间增加了1小时,然后随着退火时间进一步增加而降低。 Al6063 / Cu中的扩散层的生长大于Al6061 / Cu中的扩散层,因为在退火过程中Al6063 / Cu中的活化能低于Al6061 / Cu中的活化能。 通过在两种材料中的延长时间延长时,通过退火发生扩散层的开裂,这有助于降低硬度。

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