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Interdiffusion structures and paths for multiphase Fe-Ni-Al diffusion couples at 1000 °C

机译:1000°C时多相Fe-Ni-Al扩散对的互扩散结构和路径

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摘要

Diffusion studies were carried out in the Fe-Ni-Al system at 1000 °C using solid-solid diffusion couples assembled with β (B2), γ (fcc) single phase, and (β + γ) two-phase alloys. The diffusion couples were encapsulated in quartz tubes under vacuum and annealed for 48 hours. The diffusion structures were examined by optical and scanning electron microscopy. For all β vs (β + γ) couples, growth of the β phase was observed as the (β + γ) two-phase region recessed with the dissolution of the γ phase. For multiphase couples assembled with two (β + γ) terminal alloys, demixing of the (β + γ) two-phase alloys occurred with the formation of single-phase β and γ layers. The development of an interphase boundary between the (β + β′) two-phase region and the γ phase is reported for the first time for a Fe-Ni-Al diffusion couple assembled with single-phase, β, and γ terminal alloys. Various diffusion structures for the couples were related to their diffusion paths constructed from concentration profiles determined by electron probe microanalysis. Interdiffusion fluxes of individual components were determined directly from the experimental concentration profiles and examined in light of diffusional interactions and the development of zero-flux planes and flux reversals. In addition, the boundaries for the miscibility gap between the ordered β and disordered β′ phases of the Fe-Ni-Al system at 1000 °C were determined with the aid of diffusion couples that developed β and β′ phases in the diffusion zone.
机译:在Fe-Ni-Al系统中,采用β(B2 ),γ(fcc)单相和(β+γ)两相组装的固-固扩散偶,进行了扩散研究。合金。将扩散对在真空下封装在石英管中,并退火48小时。通过光学和扫描电子显微镜检查扩散结构。对于所有β对(β+γ)对,观察到β相的生长,因为(β+γ)两相区域随着γ相的溶解而凹陷。对于组装有两种(β+γ)末端合金的多相电偶,(β+γ)两相合金的混合发生了单相β和γ层的形成。首次报道了由单相,β和γ端基合金组装的Fe-Ni-Al扩散偶的在(β+β')两相区域和γ相之间的相界边界的发展。这些对的各种扩散结构与它们的扩散路径有关,这些扩散路径由电子探针微分析确定的浓度分布图构成。直接从实验浓度曲线确定各个组分的互扩散通量,并根据扩散相互作用以及零通量平面的发展和通量反转来进行检查。另外,借助于在扩散区中形成β相和β′相的扩散偶,确定了Fe-Ni-Al系统在1000℃下有序β相和无序β′相之间的混溶间隙的边界。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第9期|2361-2370|共10页
  • 作者单位

    the Advanced Materials Processing and Analysis Center Department of Mechanical Materials and Aerospace Engineering University of Central Florida 32816-2455 Orlando FL;

    the Advanced Materials Processing and Analysis Center Department of Mechanical Materials and Aerospace Engineering University of Central Florida 32816-2455 Orlando FL;

    the School of Materials Engineering Purdue University 47907-1289 West Lafayette IN;

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