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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Improving corrosion and wear resistance of FV520B steel by high current pulsed electron beam surface treatment
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Improving corrosion and wear resistance of FV520B steel by high current pulsed electron beam surface treatment

机译:通过大电流脉冲电子束表面处理提高FV520B钢的耐腐蚀和耐磨性

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摘要

High current pulsed electron beam (HCPEB) surface treatment was conducted on FV520B steel with accelerating voltage 27 kV, pulse duration 2.5 μs, energy density 5 J/cm~2 and 1-25 pulses. The surface microstructure and element distribution were examined by using scanning electron microscope (SEM), electron probe micro-analysis (EPMA) and X-ray diffraction (XRD) methods. After HCPEB treatments, the surface microstructure became refined and uniform with an average grain size less than 2 μm and a preferential solidification orientation in (200) direction. The thickness of surface remelted layer was ~4 μm. The initial precipitated particles in surface layer of depth ~10 μm were dissolved into the base matrix and gave a homogenous element distribution. The HCPEB modified surface exhibited an effective improvement in corrosion and wear resistance. The corrosion potential shifted towards positive and the corrosion rate decreased nearly one order of magnitude, while the wear resistance after 25 pulses of HCPEB treatment increased by 3 times as compared with the initial FV520B steel.
机译:对FV520B钢进行了大电流脉冲电子束(HCPEB)表面处理,加速电压为27 kV,脉冲持续时间为2.5μs,能量密度为5 J / cm〜2,脉冲为1-25。通过使用扫描电子显微镜(SEM),电子探针显微分析(EPMA)和X射线衍射(XRD)方法检查了表面微观结构和元素分布。经过HCPEB处理后,表面微观结构变得细化和均匀,平均晶粒尺寸小于2μm,并且在(200)方向具有优先的凝固取向。表面重熔层的厚度为〜4μm。深度约10μm的表层中最初沉淀的颗粒溶解到基础基质中,并具有均匀的元素分布。 HCPEB改性的表面在腐蚀和耐磨性方面表现出有效的改善。与最初的FV520B钢相比,腐蚀潜势趋向正,腐蚀速率降低了近一个数量级,而经过25次HCPEB处理后的耐磨性提高了3倍。

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