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Mo/MoS-Pb-PbS薄膜结构损伤及摩擦学性能的原子氧侵蚀影响研究

Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS-Pb-PbS Thin Film.

作者信息

Han Cuihong, Li Guolu, Ma Guozheng, Shi Jiadong, Wei Aobo, Li Zhen, Yong Qingsonge, Wang Haidou, Wang Huipeng

机构信息

School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300401, China.

School of Mechanical Engineering, Tianjin University of Technology and Education, Tianjin 300222, China.

出版信息

Materials (Basel). 2022 Mar 1;15(5):1851. doi: 10.3390/ma15051851.

Abstract

To investigate atomic oxygen effects on tribological properties of Mo/MoS-Pb-PbS film and further enlarge application range, atomic oxygen exposure tests were carried out for 5 h, 10 h, 15 h, and 20 h by the atomic oxygen simulator with atomic oxygen flux of 2.5 × 10 atoms/cm·s. The exposure time in test was equivalent to the atomic oxygen cumulative flux for 159.25 h, 318.5 h, 477.75 h, and 637 h at the height of 400 km in space. Then, the vacuum friction test of Mo/MoS-Pb-PbS thin film was performed under the 6 N load and 100 r/min. By SEM, TEM, and XPS analysis of the surface of the film after atomic oxygen erosion, it was observed that atomic oxygen could cause serious oxidation on the surface of Mo/MoS-Pb-PbS film, and the contents of MoS, PbS, and Pb, which were lubricating components, were significantly reduced, and oxides were generated. From AES analysis and the variation in the main element content, Mo/MoS-Pb-PbS thin film showed self-protection ability in an atomic oxygen environment. Hard oxide generated after atomic oxygen erosion such as MoO and PbO could cause the friction coefficient slight fluctuations, but the average friction coefficient was in a stable state.

摘要

为研究原子氧对Mo/MoS-Pb-PbS薄膜摩擦学性能的影响并进一步扩大其应用范围,采用原子氧通量为2.5×10 atoms/cm·s的原子氧模拟器进行了5小时、10小时、15小时和20小时的原子氧暴露试验。试验中的暴露时间相当于在400公里高空处空间中原子氧累积通量为159.25小时、318.5小时、477.75小时和637小时的情况。然后,在6 N载荷和100 r/min条件下对Mo/MoS-Pb-PbS薄膜进行了真空摩擦试验。通过对原子氧侵蚀后薄膜表面进行扫描电子显微镜(SEM)、透射电子显微镜(TEM)和X射线光电子能谱(XPS)分析,观察到原子氧会导致Mo/MoS-Pb-PbS薄膜表面发生严重氧化,作为润滑成分的MoS、PbS和Pb的含量显著降低,并生成了氧化物。从俄歇电子能谱(AES)分析和主要元素含量变化来看,Mo/MoS-Pb-PbS薄膜在原子氧环境中表现出自我保护能力。原子氧侵蚀后生成的诸如MoO和PbO等硬氧化物会导致摩擦系数有轻微波动,但平均摩擦系数处于稳定状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fe9/8911873/34f20ff623ea/materials-15-01851-g001a.jpg

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