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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Evaluation of the effects of plasma nitriding temperature and time on the characterisation of Ti 6Al 4V alloy
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Evaluation of the effects of plasma nitriding temperature and time on the characterisation of Ti 6Al 4V alloy

机译:等离子体氮化温度和时间对Ti 6Al 4V合金表征的影响

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摘要

The effects of plasma nitriding (PN) temperature and time on the structural and tribological characterisation of Ti 6Al 4V alloy were investigated. PN processes under gas mixture of N_2/H_2 = 4 were performed at temperatures of 700, 750, 800 and 850 C for duration of 2, 5 and 10 h. Cross section and surface characterisation were evaluated by means of SEM, AFM, XRD and microhardness test techniques. Dry wear tests were performed using a pin on disc machine. Mass loss and coefficient of friction were measured during the wear tests. Three distinguished structures including of a compound layer (constituted of -TiN and -Ti_2N), an aluminium-rich region and a diffusion zone (interstitial solid solution of nitrogen in titanium) were detected at the surface of plasma nitrided Ti 6Al 4V alloy. These structures increased surface hardness of Ti 6Al 4V alloy significantly and gradually distributed the hardness from the surface to the substrate. The "surface hardness", "surface roughness", "wear resistance" and "coefficient of friction" of the alloy were increased due to plasma nitriding process. Moreover, rising both process temperature and time led to increasing of "layers thicknesses", "surface hardness", "surface roughness", "dynamic load-ability" and "wear resistance" of Ti 6Al 4V alloy.
机译:研究了等离子体氮化(PN)温度和时间对Ti 6Al 4V合金的结构和摩擦学特性的影响。在N_2 / H_2 = 4的气体混合物下进行PN工艺的温度为700、750、800和850 C,持续时间为2、5和10小时。通过SEM,AFM,XRD和显微硬度测试技术评估横截面和表面特性。使用在圆盘机上的销钉进行干磨损测试。在磨损测试中测量了质量损失和摩擦系数。在等离子氮化的Ti 6Al 4V合金表面检测到三种不同的结构,包括化合物层(由-TiN和-Ti_2N构成),富铝区和扩散区(氮在钛中的间隙固溶体)。这些结构显着提高了Ti 6Al 4V合金的表面硬度,并使硬度从表面到基材逐渐分布。由于等离子体氮化处理,合金的“表面硬度”,“表面粗糙度”,“耐磨性”和“摩擦系数”增加。而且,工艺温度和时间的增加导致Ti 6Al 4V合金的“层厚度”,“表面硬度”,“表面粗糙度”,“动态负载能力”和“耐磨性”的增加。

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