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Durability evaluation of carbon steel AISI1045 coated diamond-like carbon film using an atmospheric controlled IH-FPP system for pretreatment

机译:碳钢AISI1045涂布金刚石碳膜的耐久性评价使用大气控制的IH-FPP系统进行预处理

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Diamond-like carbon (DLC) films are well known for their excellent tribological properties; however, poor adhesion limits the practical applications of DLC films. In order to clarify the effect of atmospheric controlled IH-FPP (AIH-FPP) treatment for pretreatment on durability and adhesion of carbon steel AISI1045 coated DLC films, wear tests were carried out with a focus on the coating damage and delamination behavior. A Cr particle which indicates high chemical affinity to carbon which constitutes the DLC films was selected as shot material for the AIH-FPP treatment, and AIH-FPP was performed with two types of treatment conditions; the one generates the Cr transferred layer and the other generates the Cr diffused layer on the substrate surface. After AIH-FPP treatment, DLC films were coated on them by using an unbalanced magnetron sputtering (UBMS) method to a thickness of 2 μm. The specimens which have a Cr diffused layer at substrate surface and DLC films on it indicated low friction coefficient and maintained the excellent wear properties in the long-term region compared with practical DLC coated specimens. Consequently, it can be concluded that AIH-FPP with Cr particle is appropriate pretreatment before the coating process to achieve high durability and adhesion.
机译:菱形碳(DLC)薄膜是众所周知的,其优异的摩擦学特性是众所周知的;然而,粘附性差限值DLC薄膜的实际应用。为了阐明大气控制IH-FPP(AIH-FPP)处理对耐久性和碳钢AISI1045涂覆的DLC膜的粘附性的预处理的影响,采用胶片损伤和分层行为进行磨损试验。选择对构成DLC膜的高化学亲和力的Cr粒子被选择为AIH-FPP处理的射击材料,并用两种类型的处理条件进行AIH-FPP;产生CR传送层,另一个产生基板表面上的Cr扩散层。在AIH-FPP处理之后,通过使用不平衡的磁控溅射(UBMS)法在厚度为2μm的厚度上涂覆DLC膜。在其上具有Cr扩散层的标本和DLC膜上的标本表明了与实际DLC涂层样本相比,在长期区域中保持低摩擦系数,并保持优异的磨损性能。因此,可以得出结论,具有Cr颗粒的AIH-FPP是在涂覆过程之前适当的预处理,以实现高耐久性和粘附性。

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