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[ 8 ] Li Yi, Zhang Songwei, Ding Qi, et al. The corrosion and lubrication 19–26 (in Chinese) [杜鹏飞, 陈国需, 宋世远, 等. 镍掺杂白云母复
properties of 2-Mercaptobenzothiazole functionalized ionic liquids 合粉体的制备及其作为润滑脂添加剂的摩擦学性能[J]. 摩擦学学
for bronze[J]. Tribology International, 2017, 114: 121–131. doi: 报, 2017, 37(1): 19–26].
10.1016/j.triboint.2017.04.022. [20] Yu Helong, Xu Yi, Shi Peijing, et al. Mechanical and tribological
[ 9 ] Huang G, Yu Q, Ma Z, et al. Probing the lubricating mechanism of properties of tribofilm derived from serpentine mineral lubricant
oil soluble ionic liquids additives[J]. Tribology International, 2017, additive[J]. Tribology, 2012, 32(5): 500–506 (in Chinese) [于鹤龙,
107: 152–162. doi: 10.1016/j.triboint.2016.08.027. 许一, 史配京, 等. 蛇纹石润滑油添加剂摩擦反应膜的力学特征和
[10] Yang Desuo, Li Wenqian, Ma lin, et al. The synthesis and 摩擦学性能[J]. 摩擦学学报, 2012, 32(5): 500–506].
tribological properties of hexafluoroacetylacetone ionic liquid [21] Hu Yuliang, Liu Guohong, Zhou Xiaodong, et al. XPS study on
lubricants[J]. Tribology, 2019, 39(6): 746–755 (in Chinese) [杨 得 copper oxide in impregnated carbon[J]. Guangzhou Chemical
锁, 李文倩, 马琳, 等. 六氟乙酰丙酮离子液体的合成及摩擦学性 Industry, 2018, 46(7): 73–76 (in Chinese) [胡玉良, 刘国宏, 周晓东,
能研究[J]. 摩擦学学报, 2019, 39(6): 746–755]. 等. 浸渍炭中铜氧化物的XPS研究[J]. 广州化工, 2018, 46(7):
[11] Yu Bo, Cui Yifei, Wu Gensheng, et al. Tribological performances of 73–76]. doi: 10.3969/j.issn.1001-9677.2018.07.024.
dicationic ionic liquids at elevated temperature[J]. Tribology, 2018, [22] Wagner C D, Riggs W M, Davis L E, et al. Handbook of X-ray
38(5): 595–600 (in Chinese) [于波, 崔逸飞, 伍根生, 等. 双咪唑阳 photoelectron spectroscopy[M]. Eden Prairie: Perkin-Elmer
离子结构离子液体的高温摩擦学性能研究[J]. 摩擦学学报, 2018, Corporation, 1979: 49-58.
2+ 3+
38(5): 595–600]. [23] Yamashita T, Hayes P. Analysis of XPS spectra of Fe and Fe ions
[12] Zhai Wenzheng, Lu Wenlong, Liu Xiaojun, et al. Nanodiamond as in oxide materials[J]. Applied Surface Science, 2008, 254:
an effective additive in oil to dramatically reduce friction and wear 2441–2449. doi: 10.1016/j.apsusc.2007.09.063.
for fretting steel/copper interfaces[J]. Tribology International, 2019, [24] Allahdin O, Dehou S C, Wartel M, et al. Performance of FeOOH-
129: 75–81. doi: 10.1016/j.triboint.2018.08.006. brick based composite for Fe(Ⅱ) removal from water in fixed bed
[13] Yu H L, Xu Y, Shi P J, et al. Microstructure, mechanical properties column and mechanistic aspects[J]. Chemical Engineering Research
and tribological behavior of tribofilm generated from natural and Design, 2013, 91: 2732–2742. doi: 10.1016/j.cherd.2013.04.006.
serpentine mineral powders as lubricant additive[J]. Wear, 2013, [25] Pelissier B, Fontaine H, Beaurain A, et al. HF contamination of 200
297: 802–810. doi: 10.1016/j.wear.2012.10.013. mm Al wafers: A parallel angle resolved XPS study
[14] Wu Junwei, Wang Xiao, Zhou Luhai, et al. Formation factors of the Microelectron[J]. Engineering, 2011, 88: 861–866.
surface layer generated from serpentine as lubricant additive and [26] Montesdeoca-santana A, JIMÉNEZ-RODRÍGUEZ E, Marrero N, et
composite reinforcement[J]. Tribology Letters, 2017, 65: 93–102. al. XPS characterization of different thermal treatments in the
doi: 10.1007/s11249-017-0873-1. ITO –Si interface of a carbonate-textured monocrystalline silicon
[15] Zhang Baosen, Xu Binshi, Xu Yi, et al. An amorphous Si-O film solar cell[J]. Nuclear Instruments & Methods in Physics Research B,
tribo-induced by natural hydrosilicate powders on ferrous surface[J]. 2010, 268: 374–378.
Applied Surface Science, 2013, 285: 759–765. doi: 10.1016/j.apsusc. [27] Zhang Bo. Preparation of self-repairing greases based on nano
2013.08.123. attapulgite powders and investigation on their tribological
[16] Zhang Y W, Li Z P, Yan J C, et al. Tribological behaviors of characteristics[D]. Beijing: Academy of Armored Forces
surface-modified serpentine powder as lubricant additive[J]. Engineering, 2012(in Chinese) [张博. 基于纳米凹凸棒石的在线修
Industrial Lubrication and Tribology, 2016, 68: 1–8. doi: 复型润滑脂制备与摩擦学机理研究[D]. 北京: 装甲兵工程学院,
10.1108/ILT-01-2013-0005. 2012].
[17] Jin Yuansheng. The effect of internal oxidation from serpentine on [28] Zhao Fuyan. Tribological properties of serpentine micro-
generating reconditioning layer on worn ferrous metal surfaces[J]. nanoparticles and mechanism of tribofilm formation[D]. Beijing:
Chinese Surface Engineer, 2010, 23(1): 46–50, 56 (in Chinese) [金 China University of Geosciences, 2014(in Chinese) [赵福燕. 微纳
元生. 蛇纹石内氧化效应对铁基金属磨损表面自修复层生成的作 米蛇纹石粉体的摩擦行为及其成膜机理研究[D]. 北京: 中国地质
用[J]. 中国表面工程, 2010, 23(1): 46–50, 56]. 大学, 2014].
[18] Qi Xiaowen, Lu Ling, Jia Zhining, et al. Comparative tribological [29] Zhang BaoSen, Xu Binshi, Xu Yi, et al. Self-restoration effect and
properties of magnesium hexasilicate and serpentine powder as action mechanism of tribopairs consisting of analogue shaft-bushing
lubricating oil additives under high temperature[J]. Tribology induced by serpentine powders[J]. Materials Science and
International, 2012, 49: 53–57. doi: 10.1016/j.triboint.2011.12.014. Engineering of Powder Metallurgy, 2013(3): 346–352 (in Chinese)
[19] Du Pengfei, Chen Guoxu, Song Shiyuan, et al. Preparation and [张保森, 徐滨士, 许一, 等. 蛇纹石微粉对类轴–轴瓦摩擦副的自
tribological properties of Ni-doped muscovite composite particles as 修复效应及作用机理[J]. 粉末冶金材料科学与工程, 2013(3):
a lubricant additive in for lithium grease[J]. Tribology, 2017, 37(1): 346–352]. doi: 10.3969/j.issn.1673-0224.2013.03.006.