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WEAR ANALYSIS OF D.C. PULSED PLASMA NTTRIDING OF AISI 4340 LOW ALLOY STEEL FOR CRANKSHAFT APPLICATION

机译:D.C的磨损分析。AISI 4340低合金钢的脉冲等离子体NTTRING曲轴应用

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The aim of this research work was to carry out the pulsed plasma nitriding of AISI 4340 low alloy steel in a Direct Current(D.C)glow discharge system by varying the plasma nitriding temperature and time while keeping pulse duration as constant. The benefit effect of controlling the pulse duration is to avoid the continuity of electrical charges with the ions and the substrate thereby reducing the formation of compound layer which in turn avoids the brittleness and its later side effects, and also to have the homogeneity in temperature and for energy savings. The results were characterized by micro hardness measurements followed by case depth analysis by hardness mapping from case to core and surface profilometry analysis for surface roughness measurements. The microstructure of the compound layer was examined by optical microscope, and the Scanning Electron Microscope(SEM)with Energy Dispersive Spectrometer(EDS)and X-ray Diffraction(XRD)studies were employed to analyse the compound layer morphology and its properties. The wear rate was examined by using Pin on disc test and its results were analysed by SEM and EDS. The tailored properties were obtained and the process parameters were optimized for sustained usage. The broad application of usage of this method to enhance the fatigue life of the rotating part such as crankshaft, shafts when compared with gas nitriding and induction hardening.
机译:该研究的目的是通过改变等离子体氮化温度和时间,在直流电流(D.C)辉光放电系统中进行AISI 4340低合金钢的脉冲等离子体氮化。保持脉冲持续时间恒定。控制脉冲持续时间的好处效果是避免与离子和基片,从而减少化合物层的形成,其又避免了脆性和其后来的副作用,并且还具有在温度均匀性和电荷的连续性节能。通过微小的硬度测量,通过对表面粗糙度测量的核心和表面轮廓测量分析来表征微小硬度测量的表征。通过光学显微镜检查复合层的微观结构,采用扫描电子显微镜(EDS)和X射线衍射(XRD)研究来分析化合物层形态及其性质。通过在盘试验上使用PIN检查磨损率,并且通过SEM和EDS分析其结果。获得了定制的性质,优化了工艺参数以持续使用。与气体氮化和感应硬化相比,使用这种方法使用这种方法的应用增强旋转部的疲劳寿命,例如曲轴,轴。

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