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Effect of Heat Treatment on the Hardness of Ti- Mo-N Films Deposited by RF Reactive Magnetron Sputtering

机译:热处理对RF反应磁控溅射沉积Ti-Mo-N薄膜硬度的影响

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The effects of heat treatment on the microstructure and hardness of Ti-Mo-N films were investigated for various N contents. Ti-Mo-N films were deposited onto a AISI304 stainless steel substrate by reactive RF magnetron sputtering in a mixture of argon (7.5 ccm) and nitrogen (0-2.0 ccm) gases using a Ti_(50)Mo_(50) target. X-ray analysis of the as-deposited films indicated that the main phases of the Ti-Mo-N film produced at nitrogen gas flow rates of (fN_2) ≤ 0.2 ccm and >0.3 ccm were bcc-(Ti,Mo) and δ-(Ti,Mo)N phase, respectively. As-deposited films were heat treated in an argon atmosphere at 300-1100℃ for 30 min. Hardness was measured using a nanoindentation system. There was almost no change in the hardness of the Ti-Mo-N films deposited at fN_2 = 2.0 ccm after heat treatment. In contrast, the hardness of the films deposited at fN_2 = 0.2 and 0.3 ccm was significantly increased by heat treatment at temperatures higher than 900℃. In particular, the film deposited at fN_2 = 0.3 ccm showed a maximum hardness of approximately 35 GPa by heat treatment at 1000℃ for 30 min. X-ray measurements and transmission electron microscopy (TEM) observations indicated that the increment of hardness in the Ti-Mo-N film deposited at fN_2 = 0.3 ccm was due to the formation of a bcc-(Ti,Mo) phase in a δ-(Ti,Mo)N phase.
机译:研究了不同氮含量下热处理对Ti-Mo-N薄膜组织和硬度的影响。使用Ti_(50)Mo_(50)靶,在氩气(7.5 ccm)和氮气(0-2.0 ccm)的混合物中,通过反应性射频磁控溅射将Ti-Mo-N膜沉积到AISI304不锈钢基底上。沉积膜的X射线分析表明,在氮气流量(fN_2)≤0.2 ccm和> 0.3 ccm的情况下生产的Ti-Mo-N膜的主要相为bcc-(Ti,Mo)和δ -(Ti,Mo)N相。沉积的薄膜在氩气氛中于300-1100℃下热处理30分钟。使用纳米压痕系统测量硬度。热处理后,在fN_2 = 2.0 ccm处沉积的Ti-Mo-N膜的硬度几乎没有变化。相反,通过在高于900℃的温度下进行热处理,在fN_2 = 0.2和0.3 ccm时沉积的膜的硬度显着提高。特别是,在fN_2 = 0.3 ccm处沉积的薄膜通过在1000℃下热处理30分钟显示出最大硬度约为35 GPa。 X射线测量和透射电子显微镜(TEM)观察表明,在fN_2 = 0.3 ccm处沉积的Ti-Mo-N膜的硬度增加是由于在δ中形成了bcc-(Ti,Mo)相-(Ti,Mo)N相

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