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Influence of bias voltage on residual stresses and tribological properties of TiAlVN-coatings at elevated temperatures

机译:偏压对高温下TiAlVN涂层残余应力和摩擦学性能的影响

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摘要

The extension of tool life is a crucial goal for heat resistant forming tools. Therefore, the industry is interested to reduce the friction and wear for these tools. The employment of metals, polymeric composites, and ceramics as solid lubricants increases the production as well as maintenance costs. Thus, the thin film technology and especially new self-lubricating coatings will become increasingly important. Titanium aluminum vanadium nitride as a self-lubricating coating has a high potential to improve the tribological behavior of heat resisting tool surfaces and has good mechanical properties such as a high hardness (more than 40GPa). In this study, TiAlVN coatings were deposited on HS6-5-2C high speed steel substrates by using a magnetron sputtering system. After annealing at 650°C, a V_2O_5 (Magnéli phase) which adds self-lubricating qualities to the coatings could be detected in the TiAlVN layer. Due to the influence of adhesive and cohesive damage processes, resulting from the residual stress behavior in the layer close to the substrate area, it is critical to measure residual stresses in order to increase the wear resistance. In addition to the phase analyses, residual stress measurements were investigated by means of x-ray diffractometry as well. An experimental method, based on the traditional sin~2ψ-method and utilizing a grazing-incidence diffraction geometry was used in order to enhance the irradiation volume of thin film samples. This resulted in a higher intensity for high-angle Bragg peaks than for the Bragg-Brentano geometry. Furthermore, the mechanical and tribological properties of the TiAlVN coatings were characterized at elevated temperatures. The required results were provided by a high temperature ball-on-disk device and a nanoindenter.
机译:延长工具寿命是耐热成型工具的关键目标。因此,业界有兴趣减少这些工具的摩擦和磨损。使用金属,聚合物复合材料和陶瓷作为固体润滑剂会增加生产和维护成本。因此,薄膜技术,尤其是新型的自润滑涂层将变得越来越重要。钛铝氮化钒作为自润滑涂层具有改善耐热工具表面的摩擦性能的高潜力,并具有良好的机械性能,例如高硬度(大于40GPa)。在这项研究中,通过使用磁控溅射系统将TiAlVN涂层沉积在HS6-5-2C高速钢基底上。在650°C退火后,可以在TiAlVN层中检测到V_2O_5(马格尼利相),该V_2O_5为涂层增加了自润滑性能。由于粘合剂和内聚破坏过程的影响,这是由于靠近基材区域的层中的残余应力行为所致,因此,测量残余应力以提高耐磨性至关重要。除了相位分析之外,还通过X射线衍射法研究了残余应力的测量结果。为了提高薄膜样品的辐照量,采用了一种基于传统sin〜2ψ法并利用掠入射衍射几何学的实验方法。这导致高角度布拉格峰的强度高于布拉格-布伦塔诺几何形状的强度。此外,在升高的温度下表征了TiAlVN涂层的机械和摩擦学性能。所需的结果是由高温球形磁盘设备和纳米压头提供的。

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