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Tribological Properties of the Fe-Al-Cr Alloyed Layer by Double Glow Plasma Surface Metallurgy

机译:双辉等离子表面冶金Fe-Al-Cr合金层的摩擦学性能

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A Fe-Al-Cr alloyed layer was deposited onto the surface of Q235 low-carbon steel via double glow plasma surface metallurgy (DGPSM) to improve the steel's wear resistance. After the DGPSM treatment, the Fe-Al-Cr alloyed layer grown on the Q235 low-carbon steel was homogeneous and compact and had a thickness of 25 A mu m. The layer was found to be metallurgically adhered to the substrate. The frictional coefficient and specific wear rate of the sample with a Fe-Al-Cr alloyed layer (treated sample) were both lower than those of the bare substrate (untreated sample) at the measured temperatures (25, 250 and 450 A degrees C). The results indicated that the substrate and the alloyed layer suffered oxidative wear and abrasive wear, respectively, and that the treated samples exhibited much better tribological properties than did the substrate. The formation of Fe2AlCr, Fe3Al(Cr), FeAl(Cr), Fe(Cr) sosoloid and Cr23C6 phases in the alloyed layer dramatically enhanced the wear resistance of the treated sample. In addition, the alloyed layer's oxidation film exhibited a self-healing capacity with lubrication action that also contributed to the improvement of the wear resistance at high temperature. In particular, at 450 A degrees C, the specific wear rate of treated sample was 2.524 x 10(-4) mm(3)/N m, which was only 45.2% of the untreated sample.
机译:通过双辉等离子表面冶金(DGPSM)将Fe-Al-Cr合金层沉积在Q235低碳钢的表面上,以提高钢的耐磨性。经过DGPSM处理后,在Q235低碳钢上生长的Fe-Al-Cr合金层均匀且致密,厚度为25 Aμm。发现该层冶金学粘附到基底上。具有Fe-Al-Cr合金层的样品(处理后的样品)在测量温度(25、250和450 A摄氏度)下的摩擦系数和比磨损率均低于裸基材(未处理的样品) 。结果表明,基底和合金层分别遭受氧化磨损和磨料磨损,并且处理后的样品表现出比基底更好的摩擦学性能。在合金层中形成Fe2AlCr,Fe3Al(Cr),FeAl(Cr),Fe(Cr)溶胶相和Cr23C6相可显着提高处理后样品的耐磨性。另外,合金层的氧化膜显示出具有润滑作用的自修复能力,这也有助于提高高温下的耐磨性。特别是在450 A的温度下,处理后样品的比磨损率为2.524 x 10(-4)mm(3)/ N m,仅为未处理样品的45.2%。

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