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Recovery and recrystallisation in mechanically alloyed and annealed, legacy, FeCrAlY ODS alloy precursor powders

机译:机械合金化和退火的旧FeCrAlY ODS合金前体粉末的回收和重结晶

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This study presents findings related to the recrystallisation behaviour in Mechanically Alloyed (MA) and annealed powders of legacy commercial Oxide Dispersion Strengthened (ODS) FeCrAl alloys PM2000, MA956 and ODM751. Annealing of as-MA ODS alloy powders at temperatures ≥ 800 °C induced primary recrystallisation. The volume fraction (V_f) recrystallised increased with higher annealing temperatures in the range studied (~800-1050 °C). However, low temperature (650 °C) recovery reduced the subsequent kinetics of recrystallisation in PM2000 alloy. Transmission Electron Microscopy (TEM) analysis of annealed PM2000 and MA956 alloy powders indicates that precipitation of nano-particulate Y-Al-O phases begins at temperatures as low as 650 °C and microstructural changes during annealing of ODS powders involved interactions between nano-particle formation and recovery/recrystallisation processes. High number densities (N_V > 10~(23) m~(-3)) of coherent nano-precipitates were identified in both recovered and recrystallised regions of powder particles. These formed over a range of temperatures used in the consolidation processing of ODS alloys. The orientation relationship between nano-particles and the matrix was identical in both recovered and recrystallised grains, indicating that particles were dissolved at recrystallising interfaces and subsequently reprecipitated. Examination and comparison of as-MA and annealed powder specimens suggests that nuances in the manufacturing of these three, nominally similar, alloys leads to differences in recovery/recrystallisation behaviour, which may influence microstructure and, ultimately, properties in the final product form.
机译:这项研究提出了与机械合金化(MA)和传统商业氧化分散增强(ODS)FeCrAl合金PM2000,MA956和ODM751的退火粉末中的再结晶行为有关的发现。 As-MA ODS合金粉末在≥800°C的温度下退火导致初次重结晶。在所研究的范围内(〜800-1050°C),随着较高的退火温度,重结晶的体积分数(V_f)增加。但是,低温(650°C)的回收率降低了PM2000合金中随后的重结晶动力学。对退火的PM2000和MA956合金粉末的透射电子显微镜(TEM)分析表明,纳米颗粒Y-Al-O相的沉淀始于低至650°C的温度,ODS粉末退火过程中的微观结构变化涉及纳米颗粒之间的相互作用形成和回收/重结晶过程。在粉末颗粒的回收区和重结晶区均鉴定出高数量密度(N_V> 10〜(23)m〜(-3))的相干纳米沉淀。它们是在ODS合金固结处理所使用的温度范围内形成的。在回收和再结晶的晶粒中,纳米粒子与基体之间的取向关系相同,这表明粒子在再结晶界面处溶解并随后再沉淀。对原样MA和退火粉末样品的检查和比较表明,这三种名义上相似的合金在制造中的细微差别导致回收率/重结晶行为的差异,这可能会影响微观结构,最终影响最终产品形式的性能。

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