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Atom probe tomography of Ni-base superalloys Allvac 718Plus and Alloy 718

机译:镍基高温合金Allvac 718Plus和718合金的原子探针层析成像

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Atom probe tomography (APT) allows near atomic scale compositional- and morphological studies of, e.g. matrix, precipitates and interfaces in a wide range of materials. In this work two Ni-base superalloys with similar compositions. Alloy 718 and its derivative Allvac 718Plus, are subject for investigation with special emphasis on the latter alloy. The structural and chemical nuances of these alloys are important for their properties. Of special interest are grain boundaries as their structure and chemistry are important for the materials' ability to resist rapid environmentally induced crack propagation. APT has proved to be suitable for analyses of these types of alloys using voltage pulsed APT. However, for investigations of specimens containing grain boundaries and other interfaces the risk for early specimen fracture is high. Analyses using laser pulsing impose lower electrical field on the specimen thereby significantly increasing the success rate of investigations. Here, the effect of laser pulsing was studied and the derived appropriate acquisition parameters were then applied for microstructural studies, from which initial results are shown. Furthermore, the influence of the higher evaporation field experienced by the hardening gamma' Ni_3(Al,Nb) precipitates on the obtained results is discussed.
机译:原子探针断层扫描(APT)可以进行近乎原子级的成分和形态研究,例如基质,沉淀物和各种材料的界面。在这项工作中,两种镍基高温合金具有相似的成分。 718合金及其派生产品Allvac 718Plus尚待研究,特别强调后者。这些合金的结构和化学差异对它们的性能很重要。特别令人关注的是晶界,因为其结构和化学性质对于材料抵抗环境引起的快速裂纹扩展的能力很重要。已证明APT适用于使用电压脉冲APT分析这些类型的合金。然而,对于包含晶界和其他界面的样品的研究,早期样品断裂的风险很高。使用激光脉冲进行的分析会在样品上施加较低的电场,从而大大提高了调查的成功率。在这里,研究了激光脉冲的影响,然后将导出的合适的采集参数应用于微结构研究,从中显示出初步结果。此外,讨论了硬化γ'Ni_3(Al,Nb)析出物所经历的较高蒸发场对所得结果的影响。

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