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Tribological changes on SS304 stainless steel induced by nitrogen plasma immersion ion implantation with and without auxiliary heating

机译:辅助加热和不辅助加热下氮等离子体浸没离子注入引起的SS304不锈钢的摩擦学变化

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摘要

In order to achieve quite thick treated layers with reasonable thickness uniformity in SS304 steel, the plasma immersion ion implantation (PIII) process was run in high-temperature, up to 350 ℃, to induce high thermal diffusion but avoid the white layer formation. In these experiments, we heated the sample-holder with a shielded resistive wire properly wound around it and subjected the SS samples to nitrogen glow discharge PIII with relatively low voltages (10 kV) in different temperatures. We also treated the SS samples by the traditional PIII method, slowly increasing the high voltage pulse intensities, until 14 kV at the end of processing, reaching temperatures of up to 350 ℃. These modes of treatments were compared with respect to nitrogen implantation profiles, X-ray diffraction, tribology and mechanical properties. X-ray diffraction results indicated a much higher efficiency of auxiliary heated PHI mode compared to the ordinary PIII. Very prominent γ_N peaks were observed for the first mode, indicating large concentration of nitrogen in thick layers, confirmed by the nitrogen profiles measured by GDOS and AES. Improved mechanical and tribological properties were obtained for SS304 samples treated by the PIII with auxiliary heating, more than for ordinary PIII. Hardness was enhanced by up to 2.77 times, as seen by nanoindentation tests.
机译:为了在SS304钢中获得足够厚的处理层并具有合理的厚度均匀性,等离子浸入离子注入(PIII)工艺在高达350℃的高温下进行,以引起较高的热扩散,但避免形成白色层。在这些实验中,我们用适当缠绕的屏蔽电阻丝加热了样品架,并使SS样品在不同温度下以相对较低的电压(10 kV)经受氮气辉光放电PIII。我们还使用传统的PIII方法处理SS样品,缓慢增加高压脉冲强度,直到处理结束时达到14 kV,达到最高350℃的温度。比较了这些处理方式的氮注入曲线,X射线衍射,摩擦学和机械性能。 X射线衍射结果表明,与普通PIII相比,辅助加热的PHI模式具有更高的效率。在第一种模式下观察到非常突出的γ_N峰,表明厚层中的氮浓度很高,这已通过GDOS和AES测量的氮谱得到了证实。经PIII辅助加热处理的SS304样品,其机械和摩擦性能得到了改善,优于普通PIII。纳米压痕测试表明,硬度提高了2.77倍。

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  • 来源
    《Applied Surface Science》 |2009年第5期|1461-1465|共5页
  • 作者单位

    Laboratorio Associado de Plasma, INPE, Sao Jose dos Campos, SP, Brazil Laboratorio Associado de Sensores e Materials, INPE, Sao Jose dos Campos, SP, Brazil;

    Laboratorio Associado de Plasma, INPE, Sao Jose dos Campos, SP, Brazil;

    Depto. de Fisica, Universldade Federal do Parana, Curitiba, PR, Brazil;

    Research Center Dresden-Rossendorf, Institute of Ion Beam Physics and Materials Research, Dresden, Germany;

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

    plasma immersion ion implantation; SS304; tribology;

    机译:等离子体浸没离子注入;SS304;摩擦学;

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