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Artificial Ageing Behaviour of Al-4Zr Micro Sheets

机译:Al-4zr Micro Sheets的人工老化行为

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The continuous miniaturization of products needed e.g. in the automotive or the microelectronics sector requires process chains, which allow the manufacturing of microscopically small components in high quantities. The development of the required processes and technologies is the aim of the Collaborative Research Centre 747 "Micro Cold Forming" of the German Research Foundation. As a necessary step in the manufacturing process chain heat treatment enables the adjustment of the semi-finished micro components to cold forming. Finally, the in-service characteristics of the aluminium components have to be adjusted by precipitation hardening that increases the strength values beyond those which can be achieved by strain hardening. To provide high strength aluminium alloys with an improved thermal stability new alloy concepts and advanced production processes have been developed within the Collaborative Research Centre (CRC). Besides the scandium containing foils made of alloy Al-2Sc, foils of a novel alloy Al-4Zr with approximately 4 mass-% Zirconium has been produced by means of physical vapour deposition (PVD). In contrast to conventional strip casting techniques the PVD process operates with low temperatures, which should suppress premature precipitation during the foil production and ensure the supersaturated solid solution that is a prerequisite for precipitation hardening. Samples of this material were subsequently artificially aged and characterized by ultra micro hardness measurements (UMH), transmission electron microscopical (TEM) analysis and differential power scanning calorimetry (DPSC) to evaluate the applied aging parameters.
机译:需要的产品连续小型化。在汽车或微电子领域需要处理链,这使得允许以高量制造显微镜小部件。所需流程和技术的发展是德国研究基金会的协同研究中心747“微冷成型”的目的。作为制造过程链热处理的必要步骤,可以将半成品微量成分调节至冷成形。最后,必须通过沉淀硬化来调节铝部件的替代特性,从而增加了通过应变硬化来实现的强度值的强度值。为了提供高强度铝合金,具有改善的热稳定性,新的合金概念和先进的生产过程已经在协作研究中心(CRC)中开发。除了由合金Al-2SC制成的含钪的粉丝之外,通过物理气相沉积(PVD)制造了具有大约4质量%锆的新型合金Al-4Zr的箔。与常规的带铸造技术相比,PVD工艺用低温操作,该温度应抑制箔生产期间的过早沉淀,并确保沉淀硬化的先决条件的过饱和固溶体。随后是人工老化的,通过超微小硬度测量(UMH),透射电子显微镜(TEM)分析和差动功率扫描量热法(DPSC)来表征该材料的样品,以评估应用的老化参数。

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