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Influence of spark plasma sintering conditions on the sintering and functional properties of an ultra-fine grained 316L stainless steel obtained from ball-milled powder

机译:火花等离子体烧结条件对球磨粉制超细晶粒316L不锈钢的烧结及功能性能的影响

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摘要

In this work, 316L samples with submicrometric grain size were sintered by spark plasma sintering. To this aim, 316L powder was first ball-milled with different conditions to obtain nanostructured powder. The process control agent quantity and milling time were varied to check their influence on the crystallite size of milled powder. Samples were then sintered by spark plasma sintering using different sets of sintering parameters (temperature, dwell time and pressure). For each sample, grain size and density were systematically measured in order to investigate the influence of the sintering process on these two key microstructure parameters. Results show that suitable ball-milling and subsequent sintering can be employed to obtain austenitic stainless steel samples with grain sizes in the nanometer range with porosity lower than 3%. However, ball-milling and subsequent sintering enhance chromium carbides formation at the sample surface in addition to intragranular and intergranular oxides in the sample as revealed by X-ray diffraction and transmission electron microscopy. It has been shown that using Boron nitride together with graphite foils to protect the mold from powder welding prevent such carbide formation. For mechanical properties, results show that the grain size refinement strongly increases the hardness of the samples without deviation from Hall-Petch relationship despite the oxides formation. For corrosion resistance, grain sizes lower than a few micrometers involve a strong decrease in the pitting potential and a strong increase in passivation current. As a consequence, spark plasma sintering can be considered as a promising tool for ultra-fine grained austenitic stainless steel.
机译:在这项工作中,通过火花等离子烧结法烧结了具有亚微米级粒度的316L样品。为此,首先在不同条件下对316L粉末进行球磨,以获得纳米结构粉末。改变过程控制剂的量和研磨时间以检查它们对研磨粉末的微晶尺寸的影响。然后使用不同组的烧结参数(温度,保压时间和压力)通过火花等离子体烧结对样品进行烧结。对于每个样品,系统地测量了晶粒尺寸和密度,以研究烧结工艺对这两个关键的微观结构参数的影响。结果表明,可以采用适当的球磨和随后的烧结来获得晶粒度在纳米范围内且孔隙率低于3%的奥氏体不锈钢样品。然而,通过X射线衍射和透射电镜观察,球磨和随后的烧结除了增加了样品中的颗粒内和颗粒间氧化物外,还增强了样品表面碳化铬的形成。已经表明,将氮化硼与石墨箔一起使用以保护模具免于粉末焊接可防止这种碳化物的形成。对于机械性能,结果表明,尽管形成了氧化物,但细化晶粒的尺寸仍可显着提高样品的硬度,而不会偏离Hall-Petch关系。对于耐蚀性,小于几微米的晶粒尺寸会大大降低点蚀电位,并会大大增加钝化电流。因此,火花等离子体烧结可以被认为是超细晶粒奥氏体不锈钢的有前途的工具。

著录项

  • 来源
    《Materials Science and Engineering》 |2016年第17期|125-134|共10页
  • 作者单位

    Groupe de Physique des Materiaux, CNRS-UMR 6634, Universite de Rouen, INSA de Rouen, Avenue de l'Universite, 76800 Saint-Etienne du Rouvray, France;

    Groupe de Physique des Materiaux, CNRS-UMR 6634, Universite de Rouen, INSA de Rouen, Avenue de l'Universite, 76800 Saint-Etienne du Rouvray, France;

    Groupe de Physique des Materiaux, CNRS-UMR 6634, Universite de Rouen, INSA de Rouen, Avenue de l'Universite, 76800 Saint-Etienne du Rouvray, France;

    Laboratoire de Cristallographie des Materiaux, CNRS-UMR 6508, Universite de Caen, ENSICAEN, 7 bd du Marechal Juin, 14050 Caen, France;

    Groupe de Physique des Materiaux, CNRS-UMR 6634, Universite de Rouen, INSA de Rouen, Avenue de l'Universite, 76800 Saint-Etienne du Rouvray, France;

    Laboratoire de Cristallographie des Materiaux, CNRS-UMR 6508, Universite de Caen, ENSICAEN, 7 bd du Marechal Juin, 14050 Caen, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plasma sintering; Powder metallurgy; Stainless steel; Ultra-fine grain; Functional properties;

    机译:等离子烧结;粉末冶金;不锈钢;超细晶粒;功能特性;

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