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Effect of metal ion etching on the tribological, mechanical and microstructural properties of tin-coated D2 tool steel using CAE PVD technique

机译:金属离子刻蚀对CAE PVD技术镀锡D2工具钢的摩擦学,力学和微观组织性能的影响

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A study has been made on TiN coatings deposited on D2 tool steel substrates by using commercially available cathodic arc evaporation, physical vapor deposition technique. The goal of this work is to determine the usefulness of TiN coatings in order to improve the micro-Vickers hardness, coefficient of friction and surface roughness of TiN coating deposited on tool steel, which is vastly use in tool industry for various applications. A pin-on-disc test was carried out to study the coefficient of friction versus sliding distance of TiN coating at various ion etching rates. The tribo-test showed that the minimum value recorded for friction coefficient was 0.386 and 0.472 with standard deviation of 0.056 and 0.036 for the coatings deposited at zero and 1.6 min ion etching. The differences in friction coefficient and surface roughness was mainly associated with the macrodroplets, which was produced during etching stage. The coating deposited for 16 min metal ion etching showed the maximum hardness, i.e., about five times higher than uncoated one and 1.24 times to the coating deposited at zero ion etching. After friction test, the wear track was observed by using field emission scanning electron microscope. The coating deposited for zero ion etching showed small amounts of macrodroplets as compared to the coating deposited for 1.6 min ion etching. The elemental composition on the wear scar were investigated by means of energy dispersive X-ray, indicate no further TiN coating on wear track. A considerable improvement in TiN coatings was recorded as a function of various ion etching rates.
机译:已经通过使用可商购的阴极电弧蒸发,物理气相沉积技术对沉积在D2工具钢基底上的TiN涂层进行了研究。这项工作的目的是确定TiN涂层的有用性,以提高沉积在工具钢上的TiN涂层的显微维氏硬度,摩擦系数和表面粗糙度,这在工具工业中广泛用于各种应用。进行了圆盘试验,以研究在各种离子蚀刻速率下TiN涂层的摩擦系数与滑动距离的关系。摩擦试验表明,对于在零和1.6分钟离子刻蚀下沉积的涂层,摩擦系数的最小值记录为0.386和0.472,标准偏差为0.056和0.036。摩擦系数和表面粗糙度的差异主要与在蚀刻阶段产生的大液滴有关。进行16分钟金属离子刻蚀沉积的涂层显示出最大硬度,即比未涂覆的涂层高出约5倍,是在零离子刻蚀下沉积的涂层的1.24倍。摩擦试验后,通过场发射扫描电子显微镜观察磨损轨迹。与为1.6分钟离子蚀刻而沉积的涂层相比,为零离子蚀刻而沉积的涂层显示出少量的大液滴。通过能量色散X射线研究了磨损痕迹上的元素组成,表明在磨损道上没有进一步的TiN涂层。据记录,TiN涂层的显着改善是各种离子蚀刻速率的函数。

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