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Kinetic Analysis of Additive on Plasma Electrolytic Boriding

机译:等离子体电解硼化添加剂的动力学分析

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Plasma electrolytic boriding (PEB) is a method of combination surface strengthening and surface texturing on metal. In this study, the kinetics and the lubrication friction of borided layers in the plasma electrolytic boriding on the Q235 were investigated in an aqueous solution for 5–15 min. The cross-section and surface morphologies of the boriding layers were confirmed using scanning electron microscope (SEM). The presence of phases on the surface was determined using the X-ray diffraction. The hardness and the lubrication friction were evaluated using a micro-hardness tester and pin-on-disk friction tester in an oil sliding condition, respectively. The PEB layer contains phases in FeB, Fe 2 B, Ni 3 B 4 , NiB, and Ni 2 B. It is indicated that the value of activation energy in the PEB treatment is approximately 186.17 kJ/mol. The random micro-pores in surface texturing are unevenly distributed on the surface of the Q235. The micro-hardness of the boriding layer is up to 900 HV, whereas that of the substrate is approximately 181 HV. The weight loss of PEB sample in 10 min is 0.0017 mg in the lubrication friction, whereas that of untreated sample is 0.0047 mg in the same condition. The formation of boriding strengthening surface texturing in PEB improves lubrication friction greatly.
机译:等离子体电解硼化(PEB)是将金属表面强化和表面纹理化相结合的一种方法。在这项研究中,在水溶液中浸泡了5-15分钟,研究了在Q235上等离子电解硼化物中硼化层的动力学和润滑摩擦。使用扫描电子显微镜(SEM)确认了硼化层的横截面和表面形态。使用X射线衍射确定表面上的相的存在。分别使用微硬度测试仪和销钉盘摩擦测试仪在油滑动条件下评估硬度和润滑摩擦。 PEB层包含FeB,Fe 2 B,Ni 3 B 4,NiB和Ni 2 B中的相。表明PEB处理中的活化能的值约为186.17kJ / mol。表面织构中的随机微孔不均匀地分布在Q235的表面上。硼化层的显微硬度高达900 HV,而基材的显微硬度约为181 HV。在相同的条件下,在10分钟内PEB样品的重量损失为0.0017 mg,而未处理的样品的重量损失为0.0047 mg。 PEB的硼化强化表面纹理化的形成大大改善了润滑摩擦。

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