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首页> 外文期刊>Plasma Science & Technology >Nitriding of Aluminium Alloy in Nitrogen and Nitrogen-Helium Mixture Using 100 Hz-Pulsed DC Glow Discharge
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Nitriding of Aluminium Alloy in Nitrogen and Nitrogen-Helium Mixture Using 100 Hz-Pulsed DC Glow Discharge

机译:使用100 Hz脉冲直流辉光放电在氮气和氮气-氦气混合物中氮化铝合金

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摘要

Nitriding of aluminium alloy (AlFe1:8Zn0:8) in nitrogen and nitrogen-helium mixture was carried out by using 100 Hz-pulsed DC glow discharge. Samples are treated for different durations, namely 4h, 8h and 12h, in nitrogen plasma as well as in a mixture of nitrogen-helium plasma for the same processing duration of 4h. All nitriding treatments are carried out at an input power of 100 W, filling pressure of 1 mbar and substrates temperature of 250 degrees C. X-ray diffraction (XRD) results show an expansion in lattice spacing and consequently shift of diffraction peaks towards lower angle with the addition of helium in nitrogen plasma. Surface morphology of the treated sample is investigated by scanning electron microscopy (SEM) and energy dispersive X-ray analysis (EDX). Vickers micro-hardness testing results show increases in surface hardness with processing duration as well as with the addition of helium in nitrogen plasmas. This increase of surface hardness may be attributed to the diffusion of nitrogen content in the surface layer generating internal stresses. It is observed that the addition of helium positively affects the nitriding of samples.
机译:通过使用100Hz脉冲的DC辉光放电对铝合金(AlFe 1:8Zn 0:8)在氮和氮-氦的混合物中进行氮化。在氮气等离子体以及氮气-氦等离子体的混合物中,将样品处理不同的持续时间,即4h,8h和12h,相同的处理时间为4h。所有氮化处理均在100 W的输入功率,1 mbar的填充压力和250°C的基材温度下进行。X射线衍射(XRD)结果显示晶格间距扩大,因此衍射峰向较低角度移动在氮气等离子体中添加氦气。通过扫描电子显微镜(SEM)和能量色散X射线分析(EDX)研究了处理过的样品的表面形态。维氏显微硬度测试结果表明,表面硬度随处理时间的延长以及氮气等离子体中氦的添加而增加。表面硬度的这种增加可归因于氮含量在产生内应力的表面层中的扩散。观察到氦的添加对样品的氮化有积极影响。

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