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Improvement of tribological properties of stainless steel by alloying its surface layer with rare earth elements using high intensity pulsed plasma beams

机译:通过使用高强度脉冲等离子束使表面层与稀土元素合金化来改善不锈钢的摩擦学性能

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Austenitic stainless steels are widely used in numerous industrial applications due to their excellent corrosion resistance. However some applications are limited in cases when due to low hardness and poor tribological properties of stainless steel wear is responsible for the durability of a given engineering component.In the present work we have undertaken an attempt to improve the wear resistance of AISI 316L steel by alloying its near surface region with rare earth elements-REE using high intensity pulsed plasma beams in so called deposition by pulse erosion (DPE) mode. Power density of pulses was 10~6-10~7W/cm~2 with the pulse duration in μs range. Heating and cooling processes were of non-equilibrium type. The near surface layer-thickness in μm range-was melted and simultaneously doped with cerium and lanthanum. Various parameters of the process were set up to get level of doping between 0.3 and 2.8at.% REE.An improvement of tribological properties-linear wear and scratch resistance-with increasing REE concentration as compared to the initial material was observed.
机译:奥氏体不锈钢由于其优异的耐腐蚀性而被广泛用于许多工业应用中。但是,由于低硬度和不良的摩擦学性能决定了给定工程组件的耐用性,因此某些应用受到限制。在本工作中,我们尝试通过以下方法来提高AISI 316L钢的耐磨性:使用高强度脉冲等离子体束以所谓的脉冲腐蚀沉积(DPE)模式将其近表面区域与稀土元素REE合金化。脉冲的功率密度为10〜6-10〜7W / cm〜2,脉冲持续时间在μs范围内。加热和冷却过程属于非平衡类型。熔化了近表面层(厚度为μm范围),并同时掺杂了铈和镧。设置了工艺的各种参数,以使掺杂水平达到REE的0.3至2.8at。%。与原始材料相比,随着REE浓度的增加,摩擦性能(线性磨损和耐划伤性)得到了改善。

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