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Mechanical Properties and Diffusion Barrier Performance of CrWN Coatings Fabricated through Hybrid HiPIMS/RFMS

机译:通过混合HIPIMS / RFMS制造的CRWN涂层的机械性能和扩散阻挡性能

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CrWN coatings were fabricated through a hybrid high-power impulse magnetron sputtering/radio-frequency magnetron sputtering technique. The phase structures, mechanical properties, and tribological characteristics of CrWN coatings prepared with various nitrogen flow ratios (fN2s) were investigated. The results indicated that the CrWN coatings prepared at fN2 levels of 0.1 and 0.2 exhibited a Cr2N phase, whereas the coatings prepared at fN2 levels of 0.3 and 0.4 exhibited a CrN phase. These CrWN coatings exhibited hardness values of 16.7–20.2 GPa and Young’s modulus levels of 268–296 GPa, which indicated higher mechanical properties than those of coatings with similar residual stresses prepared through conventional direct current magnetron sputtering. Face-centered cubic (fcc) Cr51W2N47 coatings with a residual stress of ?0.53 GPa exhibited the highest wear and scratch resistance. Furthermore, the diffusion barrier performance of fcc CrWN films on Cu metallization was explored, and they exhibited excellent barrier characteristics up to 650 °C.
机译:通过混合高功率脉冲磁控溅射/射频磁控溅射技术制造CRWN涂层。研究了用各种氮流量比(FN2S)制备的CRWN涂层的相结构,机械性能和摩擦学特性。结果表明,在0.1和0.2的FN2水平下制备的CRWN涂层表现出CR2N相,而在0.3和0.4的FN2水平下制备的涂层表现出CRN相。这些Crwn涂层表现出16.7-20.2GPa的硬度值和杨氏模量水平的268-296GPa,这表明了通过通过传统直流磁控溅射制备的具有类似残余应力的涂层的机械性能更高。居高级(FCC)CR51W2N47涂层具有α0.53GPa的残余应力,呈现最高的耐磨性和耐刮擦性。此外,探索了FCC CRWN膜对Cu金属化的扩散阻挡性能,它们表现出高达650℃的优异屏障特性。

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