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A Tib_2 Metal Matrix Composite Coating Enriched With Nitrogen: Microstructure And Wear Properties

机译:富氮的Tib_2金属基复合涂层的组织和磨损性能

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Metal matrix composites containing titanium nitrides or titanium borides raise great interest to researchers due to their high wear resistance and enhanced corrosion properties. In the present investigation composite coatings containing both titanium nitrides/carbonitrides and titanium diborides were produced on plain steel substrates using the plasma transferred arc (PTA) technique with argon-nitrogen mixtures in the plasma and shielding gas. The microstructure of the metal matrix composites (MMC) obtained was thoroughly studied and found to consist of primary titanium diboride particles surrounded by a eutectic matrix containing, apart from ferrite, both titanium diboride and titanium carbonitride particles. The wear behavior of the composite coatings was assessed by pin on disk experiments. The wear rate against both a tool steel counterbody and an alumina counterbody is of the order of 10~(-4) mm~3/m. The friction coefficient for both the alloyed layer-tool steel system and the alloyed layer-alumina system increases up to sliding speed of 0.30 m/s and then decreases, when the sliding speed increases further. Specifically, the friction coefficients are varied between the values 0.5 and 0.65. The wear mechanism for the tribosystem alloyed layer-tool steel is characterized by plastic deformation and adherence of material coming from the alloyed layer to the surface of the ball, while for the tribosystem alloyed layer-alumina ball, severe plastic deformation and formation of oxide layer are observed.
机译:含氮化钛或硼化钛的金属基复合材料因其高耐磨性和增强的腐蚀性能而引起研究人员的极大兴趣。在本研究中,使用等离子转移弧(PTA)技术在等离子体和保护气体中混合了氩氮混合物,在普通钢基材上生产了包含氮化钛/碳氮化物和二硼化钛的复合涂层。对获得的金属基复合材料(MMC)的微观结构进行了彻底的研究,发现其由被共晶基质包围的初级二硼化钛颗粒组成,该共晶基质除铁素体外还包含二硼化钛和碳氮化钛颗粒。复合涂层的磨损性能通过针盘试验评估。相对于工具钢对接体和氧化铝对接体的磨损率约为10〜(-4)mm〜3 / m。合金层-工具钢体系和合金层-氧化铝体系的摩擦系数均增加,直到滑动速度为0.30 m / s,然后随着滑动速度的进一步增加而减小。具体地,摩擦系数在值0.5和0.65之间变化。摩擦系统合金层工具钢的磨损机理是塑性变形和材料从合金层到球表面的粘附,而摩擦系统合金层-氧化铝球的塑性严重变形并形成氧化层。被观察。

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