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Effects of carbon content on the high temperature friction and wear of chromium carbonitride coatings

机译:碳含量对碳氮化铬涂层高温摩擦磨损的影响

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Chromium nitride-based coatings are often used in application at high temperature. They possess high wear and oxidation resistance; however, the friction coefficient is typically very high. Therefore, we doped CrN coatings by carbon with the aim to improve tribological properties at elevated temperature, particularly to lower the friction. CrCN coatings were prepared by cathode arc evaporation technology using constant N_2 flow and variable C_2H_2 flow. The coatings with a thickness of 3-4 μ were deposited on hardened steel substrates and high-temperature resistant alloy. The carbon content varied from 0 at.% (i.e. CrN) up to 31 at.%. The standard coating characterization included the nano-hardness, adhesion, chemical composition and structure (including hot X-ray diffraction). Wear testing was done using a high temperature tribometer (pin-on-disc); the maximum testing temperature was 700℃. The coatings with carbon content 12-31 at.% showed almost identical tribological behaviour up to 700℃.
机译:氮化铬基涂料通常在高温下使用。它们具有很高的耐磨性和抗氧化性。但是,摩擦系数通常很高。因此,我们用碳掺杂了CrN涂层,目的是改善高温下的摩擦学性能,特别是降低摩擦。通过阴极电弧蒸发技术使用恒定的N_2流量和可变的C_2H_2流量制备CrCN涂层。将厚度为3-4μ的涂层沉积在硬化的钢基底和耐高温合金上。碳含量从0at。%(即CrN)到31at。%不等。标准的涂层表征包括纳米硬度,附着力,化学成分和结构(包括热X射线衍射)。磨损测试是使用高温摩擦计(针盘式)进行的;最高测试温度为700℃。碳含量为12-31 at。%的涂层在700℃以下表现出几乎相同的摩擦学行为。

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