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首页> 外文期刊>Coatings >Room and High Temperature Tribological Behaviour of W-DLC Coatings Produced by DCMS and Hybrid DCMS-HiPIMS Configuration
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Room and High Temperature Tribological Behaviour of W-DLC Coatings Produced by DCMS and Hybrid DCMS-HiPIMS Configuration

机译:由DCMS和Hybrid DCMS-Hipims配置产生的W-DLC涂层的房间和高温摩擦学行为

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摘要

Carbon-based coatings are used in many applications, particularly in sliding contacts to reduce friction and wear. To improve the tribological properties, these coatings are usually alloyed with metals; W is one of the most used since it helps improve the tribological performance at high temperatures. In this work, we compared the tribological performance of Diamond-Like Carbon alloyed with tungsten (DLC-W) films deposited by direct current magnetron sputtering (DCMS) with films deposited in a hybrid configuration DCMS + high power impulse magnetron sputtering (HiPIMS). The DLC-W coatings were produced with approximately the same W content. One hydrogenated film was deposited with the hybrid configuration for comparison purposes. Microstructure, structure, mechanical properties, and tribological behaviour were used to compare the coatings. All the films displayed a low-order structure of tungsten carbide embedded in an amorphous carbon matrix. The use of the hybrid HiPIMS/DCMS results in coatings with more compact morphologies due to the high ionization fraction of the species produced on the W target (W and Ar ionized species), which primarily will oppose the shadowing effect as the ions will reach the substrate at angles close to 90°. HiPIMS non-hydrogenated film is the more tribological, performing either at room or high temperature (150 °C) due to the much more compact morphology, which avoids the detachment of hard W-C particles, which are responsible for more efficiently scratching the film surface. Experiments revealed that wear behaviour in all the films is governed by the contact of the tribolayer formed on the counterpart composed of W–C, C and W–O against the surface of the film.
机译:碳基涂层用于许多应用中,特别是在滑动触点中以减少摩擦和磨损。为了改善摩擦学特性,这些涂层通常用金属合金化; W是最常用的,因为它有助于提高高温的摩擦学性能。在这项工作中,我们将金刚石状碳(DLC-W)薄膜(DCMS)与沉积在混合配置DCMS +高功率脉冲磁控溅射(HIPIMS)中的薄膜沉积的钨(DLC-W)薄膜合金的摩尼碳(DLC-W)膜的摩擦碳的摩擦学性能进行了比较。用大致相同的W含量生产DLC-W涂层。用混合构型沉积一个氢化薄膜以进行比较目的。使用微观结构,结构,机械性能和摩擦学行为来比较涂层。所有薄膜均显示嵌入无定形碳基质的钨碳化钨的低阶结构。杂交HIPIMS / DCMS的使用导致涂层具有更紧凑的形态,由于W靶(W和AR电离物种)上产生的物种的高电离分数,主要将相对于离子将到达的阴影效果基板在接近90°的角度。 Hipims非氢化薄膜是由于更紧凑的形态而在室温或高温(150℃)中的摩擦学,避免了硬W-C颗粒的脱离,这负责更有效地刮擦膜表面。实验表明,所有薄膜中的磨损行为都是通过在膜表面上由W-C,C和W-O组成的对手组成的堆垛层的接触来控制。

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