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Effect of silicon content on PVD film mechanical properties and cutting performance of coated cemented carbide inserts

机译:硅含量对涂层硬质合金刀片PVD薄膜力学性能和切削性能的影响

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摘要

The paper investigates the effect of Si content on TiAlSiN, TiSiN and TiAlN/TiSiN films mechanical strength, brittleness, fatigue and adhesion. The films used were deposited on cemented carbide inserts by employing cathodic arc evaporation. For determining coating strength properties, nanoindentations were carried out. Based on the data acquired and a FEM continuous simulation of nanoindentation, elasto-plastic laws for the films were determined. The adhesion of the coatings was evaluated by inclined impact tests and by Rockwell indentations. The fatigue of the examined coatings, at ambient and elevated temperatures, was characterized via perpendicular impact tests. Moreover, nano-impact tests were conducted for capturing the influence of Si-content on film brittleness. The cutting performance of the coated cemented carbide inserts was tested in milling stainless steel 304 L at various cutting speeds. According to the obtained results, the beneficial effect of Si on the cutting performance of PVD coated tools was detected within an optimum cutting speed range. In addition, a superficial TiSiN layer on TiAlN coated cemented carbide tools leads to improved compound mechanical properties. These properties, as well as the cutting performance, depend on the TiSiN-film Si content and coating structure.
机译:本文研究了硅含量对TiAlSiN,TiSiN和TiAlN / TiSiN膜的机械强度,脆性,疲劳性和附着力的影响。通过采用阴极电弧蒸发,将使用的薄膜沉积在硬质合金刀片上。为了确定涂层强度性能,进行了纳米压痕。基于所获得的数据和纳米压痕的FEM连续模拟,确定了薄膜的弹塑性定律。通过倾斜冲击试验和洛氏压痕评估涂层的粘附性。通过垂直冲击试验来表征在环境温度和高温下所检查的涂层的疲劳。此外,进行了纳米冲击试验,以捕获硅含量对薄膜脆性的影响。涂层硬质合金刀片的切削性能在各种切削速度的304 L不锈钢铣削中进行了测试。根据获得的结果,在最佳切削速度范围内检测到了Si对PVD涂层刀具切削性能的有利影响。此外,在TiAlN涂层硬质合金刀具上的表面TiSiN层可改善复合机械性能。这些性能以及切削性能取决于TiSiN膜Si含量和涂层结构。

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