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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigations of early stage precipitation in a tungsten-rich nickel-base superalloy using SAXS and SANS
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Investigations of early stage precipitation in a tungsten-rich nickel-base superalloy using SAXS and SANS

机译:使用SAXS和SANS研究富钨镍基高温合金的早期析出

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Characterization of the early stage precipitation is an important issue as it controls the emerging micro-structure developed on Ni-based superalloys which are used as single crystal blades in gas turbines. The difficulty is that the gamma prime precipitation occurs at high temperatures and the reaction kinetic is very fast. Therefore, experimental methods with high time resolution are needed to monitor γ' precipitation. By using the high flux synchrotron instrument HARWI-H set up of the Helmholtz-Zentrum Geesthacht with a fast data collection detector, it was possible to observe the creation of fine precipitates and their early growth in a tungsten-rich Ni-base superalloy. The cooling down of the superalloy from the single-phase region to lower temperatures already leads to the formation of precipitates in the size range of a few nm. The formation and growth of the precipitates at this early stage is described in detail. In addition, SANS measurements were performed at the new SANS-1 instrument at Maier-Leibnitz Zentrum (MLZ) in Garching to extend the results to larger precipitate sizes. DSC experiments were used to determine the critical temperatures of the formation of these fine precipitates, as well as the temperature at which they dissolve during heating (γ' solvus temperature).
机译:早期沉淀的表征是一个重要的问题,因为它控制了在镍基高温合金上开发的新兴微结构,该镍基高温合金用作燃气轮机中的单晶叶片。困难在于伽马主要沉淀在高温下发生,并且反应动力学非常快。因此,需要具有高时间分辨率的实验方法来监测γ'沉淀。通过使用带有快速数据收集检测器的亥姆霍兹-Zentrum Geesthacht的高通量同步加速器仪器HARWI-H,可以观察到细小沉淀物的产生及其在富含钨的镍基高温合金中的早期生长。从单相区域到较低温度的高温合金冷却已经导致形成几纳米大小范围的沉淀物。详细描述了在此早期阶段沉淀物的形成和生长。此外,在位于Garching的Maier-Leibnitz Zentrum(MLZ)的新型SANS-1仪器上进行了SANS测量,以将结果扩展到更大的沉淀物尺寸。 DSC实验用于确定这些细小沉淀物形成的临界温度,以及在加热过程中它们溶解的温度(γ'溶解温度)。

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