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Tribological Testing of Some Potential PVD and CVD Coatings for Steel Wire Drawing Dies

机译:某些拉丝模具潜在PVD和CVD涂层的摩擦学测试

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摘要

Cemented carbide is today the most frequently used drawing die material in steel wire drawing applications. This is mainly due to the possibility to obtain a broad combination of hardness and toughness thus meeting the requirements concerning strength, crack resistance and wear resistance set by the wire drawing process. However, the increasing cost of cemented carbide in combination with the possibility to increase the wear resistance of steel through the deposition of wear resistant CVD and PVD coatings have enhanced the interest to replace cemented carbide drawing dies with CVD and PVD coated steel wire drawing dies. In the present study, the possibility to replace cemented carbide wire drawing dies with CVD and PVD coated steel drawing dies have been investigated by tribological characterisation, i.e. pin-on-disc and scratch testing, in combination with post-test observations of the tribo surfaces using scanning electron microscopy, energy dispersive X-ray spectroscopy and 3D surface profilometry. Based on the results obtained, CVD and PVD coatings aimed to provide improved tribological performance of steel wire drawing dies should display a smooth surface topography, a high wear resistance, a high fracture toughness (i.e. a high cracking and chipping resistance) and intrinsic low friction properties in contact with the wire material. Also, the steel substrate used must display a sufficient load carrying capacity and resistance to thermal softening. Of the CVD and PVD coatings evaluated in the tribological tests, a CVD TiC and a PVD CrC/C coating displayed the most promising results.
机译:当今,硬质合金是钢丝拉拔应用中最常用的拉拔模具材料。这主要是由于有可能获得硬度和韧性的广泛组合,从而满足通过拉丝工艺设定的有关强度,抗裂性和耐磨性的要求。然而,硬质合金成本的增加,以及通过沉积耐磨的CVD和PVD涂层来增加钢的耐磨性的可能性,增加了人们对用CVD和PVD涂层的钢丝拉丝模代替硬质合金拉丝模的兴趣。在本研究中,已通过摩擦学特性(即针对盘和划痕测试)以及摩擦表面的事后观察相结合的方法,研究了用CVD和PVD涂层钢制拉拔模具代替硬质合金拉丝模具的可能性。使用扫描电子显微镜,能量色散X射线光谱仪和3D表面轮廓仪。根据获得的结果,旨在改善钢丝拉拔模具的摩擦学性能的CVD和PVD涂层应显示出光滑的表面形貌,高耐磨性,高断裂韧性(即高抗龟裂性和抗崩裂性)以及固有的低摩擦力与线材接触的特性。另外,所用的钢基材必须表现出足够的承载能力和抗热软化性。在摩擦测试中评估的CVD和PVD涂层中,CVD TiC和PVD CrC / C涂层显示出最有希望的结果。

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