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In-situ formation of complex oxide precipitates during processing of oxide dispersion strengthened ferritic steels

机译:氧化物弥散强化铁素体钢加工过程中原位形成复合氧化物沉淀

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In fusion and fission reactor material development, ODS alloys are the most suitable candidate materials due to its high temperature creep properties and irradiation resistance properties. This paper describes the preparation of oxide dispersion strengthened alloy powder in large quantity (>1 kg batch) in dual drive planetary ball mill using pre-alloyed ferrtic steel powder with nano sized Y2O3. The consolidation of the powders was carried out in hot isostatic press (HIP) followed by hot rolling. 99% of the theoretical density was achieved by this method. The vickers hardness values of pressed and rolled samples were in the range of 380 +/- 2HV and 719 +/- 2HV, respectively. Samples were further investigated using X-ray diffraction particle size analyzer and electron microscope. Initial increase in particle size with milling was observed showing flattening of the particle. It was found that 5 h of milling time is sufficient to reduce the particle size to achieve the desired size. Transmission electron microscopy analysis of milled ODS steel powder revealed a uniform distribution of combustion synthesized nano-Y2O3 in ferritic steel matrix after a milling time of 5 h. Preliminary results demonstrated suitability of dual drive planetary ball mill for mass production of alloy within a short time due to various kinds of forces acting at a time during milling process. Fine monoclinic Y2Si2O7 precipitates were also observed in the steel. This study explains the particle characteristics of nano Y2O3 dispersed ODS powder and formation of nano clusters in ODS ferritic alloy. (C) 2015 Elsevier B.V. All rights reserved.
机译:在聚变反应堆和裂变反应堆材料的开发中,ODS合金由于其高温蠕变性能和耐辐照性能而成为最合适的候选材料。本文介绍了使用具有纳米Y2O3的预合金铁粉在双驱动行星式球磨机中制备大量(> 1 kg批)氧化物弥散强化合金粉末的方法。粉末的固结是在热等静压机(HIP)中进行的,然后进行热轧。通过该方法达到了理论密度的99%。压制和轧制样品的维氏硬度值分别在380 +/- 2HV和719 +/- 2HV的范围内。使用X射线衍射粒度分析仪和电子显微镜进一步研究样品。观察到随着研磨的粒度初始增加,显示出颗粒变平。发现5小时的研磨时间足以减小粒径以达到所需的粒径。研磨的ODS钢粉的透射电子显微镜分析显示,经过5 h的研磨时间后,燃烧合成的纳米Y2O3在铁素体钢基质中的分布均匀。初步结果表明,由于在铣削过程中一次施加的各种作用力,双驱动行星式球磨机适用于短时间内大量生产合金的情况。在钢中还观察到细单斜Y2Si2O7沉淀。这项研究解释了纳米Y2O3分散的ODS粉末的颗粒特征以及ODS铁素体合金中纳米簇的形成。 (C)2015 Elsevier B.V.保留所有权利。

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