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首页> 外文期刊>Surface & Coatings Technology >Structure and wear resistance of 20X13 steel ion-implanted with nitrogen at a high beam-current density
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Structure and wear resistance of 20X13 steel ion-implanted with nitrogen at a high beam-current density

机译:离子注入高束流密度的20X13钢的结构和耐磨性

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摘要

X-ray diffraction and optical and electron microscopy were used to analyze microstructural variations in the surface layers of 20X13 steel after low-energy, high current-density ion implantation. These data show that nitrogen implantation produces solid solutions and precipitates of new phases in surface layers which are several mu m thick. Tribological measurements made on steel blocks in a block-on-ring tester show that implantation increases wear resistance and reduces the friction coefficient on the surface. The phases formed are controlled by the temperature of implantation and the ion fluence. Higher implantation temperatures, which induce a more effective hardening of surfaces, yield a heterogeneous structure which is unsuitable for some tribological applications and is less corrosion-resistant than the homogeneous structure observed at lower temperatures. (C) 1997 Published by Elsevier Science S.A.
机译:用X射线衍射和光学和电子显微镜分析了低能量,高电流密度离子注入后20X13钢表层的微观结构变化。这些数据表明,氮注入会在几微米厚的表层中产生固溶体和新相的沉淀。在环上试块机上对钢块进行的摩擦学测量表明,植入可以提高耐磨性并降低表面的摩擦系数。形成的相由注入温度和离子通量控制。较高的注入温度会导致表面更有效地硬化,从而产生异质结构,该异质结构不适用于某些摩擦学应用,并且与在较低温度下观察到的均质结构相比,耐腐蚀性能较差。 (C)1997年由Elsevier Science S.A.发布

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