Page 59 - 摩擦学学报2025年第4期
P. 59
第 4 期 易美荣, 等: 镀铜Ti 3 SiC 2 和石墨双相增强铜基复合材料的制备及摩擦学性能研究 547
mechanism of Cu-matrix pads for high-speed trains[J]. Tribology (in Chinese) [刘英凯, 郝文龙, 刘建刚, 等. Ti 3 SiC 2 替代石墨对铜基
International, 2023, 177: 107983. doi: 10.1016/j.triboint.2022. 粉末冶金摩擦材料性能的影响[J]. 润滑与密封, 2023, 48(6):
107983. 61–65]. doi: 10.3969/j.issn.0254-0150.2023.06.008.
[23] Fu Chuanqi, Li Shengjun, Huang Yazhong, et al. Effect of copper [29] Xu Shaofan. Effect of conductive ceramic particles Ti 3 SiC 2 content
plated graphite content on microstructure and tribological properties on the properties of carbon fiber-copper-graphite composites[J].
of Fe-25Cu-based friction materials[J]. Surface Technology, 2023, Metallic Functional Materials, 2014, 21(3): 10–14 (in Chinese) [许
52(2): 245–253 (in Chinese) [付传起, 李省君, 黄亚忠, 等. 镀铜石 少凡. 导电陶瓷颗粒Ti 3 SiC 2 含量对碳纤维-铜-石墨复合材料性能
墨含量对Fe-25Cu基摩擦材料组织结构及摩擦性能的影响[J]. 表 的影响[J]. 金属功能材料, 2014, 21(3): 10–14]. doi: 10.13228/j.
面 技 术 , 2023, 52(2): 245–253]. doi: 10.16490/j.cnki.issn.1001- boyuan.issn1005-8192.2014.03.002.
3660.2023.02.022. [30] Li Hesheng, Li Musen. Study on properties of the graphite used for
[24] Huang Yuchun, Ma Haishu, Meng Yubo, et al. Tribological synthesizing diamond[J]. Superhard Material Engineering, 2007,
behavior and self-healing properties of Ni 3 Al matrix self-lubricating 19(1): 13–18 (in Chinese) [李和胜, 李木森. 人造金刚石用石墨性
composites containing Sn-Ag-Cu and Ti 3 SiC 2 from 20 to 800 ℃[J]. 能的研究[J]. 超硬材料工程, 2007, 19(1): 13–18]. doi: 10.3969/j.
Coatings, 2023, 13(4): 711. doi: 10.3390/coatings13040711. issn.1673-1433.2007.01.004.
[25] Shi Xiaoliang, Zhai Wenzheng, Wang Mang, et al. Tribological [31] Li Duanyang. Fabrication and properties of Ti 3 SiC 2 、 Al 2 O 3 and
performance of Ni 3 Al–15wt% Ti 3 SiC 2 composites against Al 2 O 3 , Y 2 SiO 5 porous ceramics[D]. Beijing: University of Chinese
Si 3 N 4 and WC-6Co from 25 to 800 ℃[J]. Wear, 2013, 303(1–2): Academy of Sciences, 2012 (in Chinese) [李端阳. Ti 3 SiC 2 、Al 2 O 3 和
244–254. doi: 10.1016/j.wear.2013.03.034. Y 2 SiO 5 多孔陶瓷的制备和性能表征[D]. 北京: 中国科学院大学,
[26] Tabares E, Jiménez-Morales A, Tsipas S A. Study of the synthesis of 2012].
MAX phase Ti 3 SiC 2 powders by pressureless sintering[J]. Boletín [32] Xu Wenhu, Fu Chuanjin, Zhong Min, et al. Effect of type and
De La Sociedad Españ ola De Cerámica y Vidrio, 2021, 60(1): content of iron powder on the formation of oxidized film and
41–52. doi: 10.1016/j.bsecv.2020.01.004. tribological properties of Cu-matrix composites[J]. Materials &
[27] He Boming, Liu Xiubo, Zhang Shiyi, et al. Investigation on Design, 2022, 214: 110383. doi: 10.1016/j.matdes.2022.110383.
tribological properties of Stellite3/Ti 3 SiC 2 composite coatings on [33] Liu Liping, Wei Jingdan, Chen Hua. Effect of the graphite content
Inconel 718 alloy by laser cladding[J]. Tribology, 2023, 43(6): on the friction and wear properties of Cu-based friction materials
606–615 (in Chinese) [贺泊铭, 刘秀波, 张诗怡, 等. Inconel 718合 used in wind turbine generator system[J]. Journal of Changchun
金激光熔覆Stellite3/Ti 3 SiC 2 复合涂层摩擦学性能研究[J]. 摩擦学 University of Technology (Natural Science Edition), 2014, 35(6):
学报, 2023, 43(6): 606–615]. doi: 10.16078/j.tribology.2022126. 696–700 (in Chinese) [刘利萍, 魏敬丹, 陈华. 石墨含量对风电机
[28] Liu Yingkai, Hao Wenlong, Liu Jiangang, et al. Effect of Ti 3 SiC 2 组用铜基摩擦材料摩擦磨损性能的影响[J]. 长春工业大学学报
replacing graphite on properties of copper-based powder metallurgy (自然科学版), 2014, 35(6): 696–700]. doi: 10.15923/j.cnki.cn22-
friction materials[J]. Lubrication Engineering, 2023, 48(6): 61–65 1382/t.2014.06.020.

