Page 89 - 摩擦学学报2025年第5期
P. 89
第 5 期 马鹏程, 等: 钨掺杂类石墨涂层/蓖麻油酸固液复合润滑体系的摩擦学性能研究 723
[14] Zhao Xuejing. Three methods of preparing ricinoleic acid[J]. Grain [22] Sun Shouyi, Li Jianfeng, Li Jinjin, et al. Enhanced superlubricity on
Distribution Technology, 2014, (3): 38–41 (in Chinese) [赵学敬. 蓖 a-C films by lubrication with 3-hydroxypropionic acid[J]. Carbon,
麻油酸与3种制取方法[J]. 粮食流通技术, 2014, (3): 38–41]. 2022, 199: 161–169. doi: 10.1016/j.carbon.2022.07.062.
[15] Ge Feng, Wang Hai, Ding Yuanli, et al. Vigorously developing [23] Zeng Q F, Dong G N, Martin J M. Green superlubricity of Nitinol 60
green and environmentally friendly lubricants[J]. Science & alloy against steel in presence of castor oil[J]. Scientific Reports,
Technology Vision, 2013, (31): 320 (in Chinese) [葛峰, 王海, 丁媛 2016, 6: 29992. doi: 10.1038/srep29992.
丽, 等. 大力发展绿色环保润滑油[J]. 科技视界, 2013, (31): 320]. [24] Long Y, Galipaud J, Weihnacht V, et al. Achieving superlubricity
doi: 10.19694/j.cnki.issn2095-2457.2013.31.268. using selected tribo-pairs lubricated by castor oil and unsaturated
[16] Sun Xiaoying, Zhu Feng, Qu Yangjun. Research of using the fatty acids[J]. Tribology International, 2022, 169: 107462. doi: 10.
modified vegetable oils as biodegradable lubricating base oil[J]. 1016/j.triboint.2022.107462.
Lubricating Oil, 2015, 30(2): 1–6 (in Chinese) [孙晓英, 朱峰, 曲洋 [25] Long Y, Martin J M, Dubreuil F, et al. Achieving superlubricity of
君. 改性植物油作为可降解润滑油基础油的研究进展[J]. 润滑油, ricinoleic acid in the steel/Si 3 N 4 contact under boundary
2015, 30(2): 1–6]. doi: 10.19532/j.cnki.cn21-1265/tq.2015.02.001. lubrication[J]. Tribology Letters, 2022, 70(4): 109. doi: 10.1007/
[17] Yang Shenzhong. Development trends of lubrication technology[J]. s11249-022-01649-5.
Plant Maintenance Engineering, 2014, (6): 5–8 (in Chinese) [杨申 [26] Zhang Xin, Xiao Xiaoling, Hong Ruijiang, et al. Microstructure and
仲. 润滑技术发展趋势[J]. 设备管理与维修, 2014, (6): 5–8]. doi: properties of diamond-like-carbon film doped W[J]. Materials for
10.3969/j.issn.1001-0599.2014.06.002. Mechanical Engineering, 2009, 33(9): 79–84 (in Chinese) [张馨, 肖
[18] Du Changhe, Yu Tongtong, Zhang Liqiang, et al. Robust and 晓玲, 洪瑞江, 等. 掺杂钨类金刚石膜的显微结构与性能[J]. 机械
universal macroscale superlubricity with natural phytic acid 工程材料, 2009, 33(9): 79–84].
solutions[J]. Tribology International, 2023, 183: 108387. doi: 10. [27] Sarangi D, Panwar O S, Kumar S, et al. Characterization studies of
1016/j.triboint.2023.108387. diamond-like carbon films grown using a saddle-field fast-atom-
[19] Fu Xiaojing, Cao Lei, Qi Caixia, et al. Ultralow friction of PVD TiN beam source[J]. Journal of Vacuum Science & Technology A:
coating in the presence of glycerol as a green lubricant[J]. Ceramics Vacuum, Surfaces, and Films, 2000, 18(5): 2302–2311. doi:
International, 2020, 46(15): 24302–24311. doi: 10.1016/j.ceramint. 10.1116/1.1289699.
2020.06.211. [28] Yadav A A, Hunge Y M, Kang S W. Porous nanoplate-like tungsten
[20] Long Y, Bouchet M I D, Lubrecht T, et al. Superlubricity of glycerol trioxide/reduced graphene oxide catalyst for sonocatalytic
by self-sustained chemical polishing[J]. Scientific Reports, 2019, 9: degradation and photocatalytic hydrogen production[J]. Surfaces and
6286. doi: 10.1038/s41598-019-42730-9. Interfaces, 2021, 24: 101075. doi: 10.1016/j.surfin.2021.101075.
[21] Long Y, Wang Y, Weihnacht V, et al. Mechanism of superlubricity [29] Nayak B B, Dash T, Pradhan S. Spectroscopic evaluation of
of a DLC/Si 3 N 4 contact in the presence of castor oil and other green tungsten carbide-titanium carbide composite prepared by arc plasma
lubricants[J]. Friction, 2022, 10(10): 1693–1706. doi: 10.1007/ melting[J]. Journal of Electron Spectroscopy and Related
s40544-022-0601-1. Phenomena, 2020, 245: 146993. doi: 10.1016/j.elspec.2020.146993.