Page 28 - 摩擦学学报2025年第8期
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1126                                   摩擦学学报(中英文)                                        第 45 卷

                 on  the  microstructure  and  properties  of  an  Fe 36 Ni  Invar  alloy[J].  工 程 ,  2013,  42(11):  2269–2273].  doi:  10.3969/j.issn.1002-185X.
                 International Journal of Modern Physics B, 2020, 34(31): 2050297.  2013.11.015.
                 doi: 10.1142/S0217979220502975.               [32]   Wu Dongsheng, Deng Wei, Wen Hui, et al. Effect of V content on
            [24]   Li  Chengru,  Deng  Xiangtao,  Liang  Liang,  et  al.  Study  on  austenite grain growth of Cr-Mo-V steel for brake disc of 350 km/h
                 microstructure, properties and high temperature wear behavior of a  high  speed  railway[J].  Heat  Treatment  of  Metals,  2023,  48(9):
                 novel  high  temperature  wear-resistant  steel[J].  Journal  of  Iron  and  136–143 (in Chinese) [邬冬生, 邓伟, 文辉, 等. 钒含量对时速350 km
                 Steel Research, 2021, 33(8): 862–870 (in Chinese) [李成儒, 邓想涛,  高铁制动盘用Cr-Mo-V钢奥氏体晶粒长大的影响[J]. 金属热处
                 梁亮, 等. 新型耐高温磨损钢板组织性能与高温磨损行为研究[J].                 理, 2023, 48(9): 136–143]. doi: 10.13251/j.issn.0254-6051.2023.09.
                 钢 铁 研 究 学 报 ,  2021,  33(8):  862–870].  doi:  10.13228/j.boyuan.  024.
                 issn1001-0963.20210120.                       [33]   Yin  Chaochao,  Huang  Haihong,  Zhou  Dan,  et  al.  Effect  of  laser
            [25]   Chen Xiang, Li Yanxiang. Effects of RE/V/Ti multi-modification on  surface texturing on fretting damage of interference fit interface[J].
                 grain  refinement  of  high  silicon  cast  steel[J].  Transactions  of  Tribology, 2023, 43(12): 1478–1485 (in Chinese) [殷超超, 黄海
                 Materials and Heat Treatment, 2006, 27(3): 75–80,145 (in Chinese)  鸿, 周丹, 等. 激光表面织构对过盈配合界面微动损伤的影响[J].
                 [陈祥, 李言祥. 稀土、钒、钛变质处理对高硅铸钢晶粒细化的影                   摩擦学学报, 2023, 43(12): 1478–1485]. doi: 10.16078/j.tribology.
                 响[J]. 材料热处理学报, 2006, 27(3): 75–80,145]. doi: 10.3969/j.  2022219.
                 issn.1009-6264.2006.03.017.                   [34]   Du Weiyi, Li Hongyu, Liu Yang, et al. Effect of crystal grain size on
            [26]   Qiu  Yuxin,  Zhang  Aijun,  Xin  Benbin,  et  al.  Microstructure,  tensile  properties  of  0Cr 18 Ni 10 Ti  stainless  steel  tubes[J].  Foundry
                 mechanical   properties   and   tribological   properties   of  Technology, 2013, 34(6): 686–688 (in Chinese) [杜维谊, 李红宇,
                 Al 0.2 Co 1.5 CrNi 1.5 Ti 0.5 Mo x   high-temperature  wear-resisting  high  刘扬, 等. 晶粒大小对0Cr 18 Ni 10 Ti不锈钢管力学性能的影响[J]. 铸
                 entropy alloy[J]. Tribology, 2023, 43(12): 1381–1392 (in Chinese)  造技术, 2013, 34(6): 686–688].
                 [邱玉新, 张爱军, 辛本斌, 等. Al 0.2 Co 1.5 CrNi 1.5 Ti 0.5 Mo x 高温耐磨高  [35]   Ji  Hongbin,  Wang  Jianmei,  Cheng  Xianhua,  et  al.  Effect  of  rare
                 熵合金的组织结构、力学性能和摩擦学性能[J]. 摩擦学学报,                    earth La on the precipitation characteristics of carbides in 42CrMo
                 2023, 43(12): 1381–1392]. doi: 10.16078/j.tribology.2022212.  steel  and  the  mechanism  of  enhanced  tribological  properties[J].
            [27]   Zheng Jiaxin, He Jiaxin, Lei Lei, et al. Failure study of two alloy  Tribology, 2024, 44(8): 1032–1042 (in Chinese) [吉宏斌, 王建梅,
                 seal rings paired with impregnated graphite[J]. Journal of Southwest  程先华, 等. 稀土La对42CrMo钢碳化物析出特征及摩擦学性能增
                 Jiaotong University, 2025, 60(02): 411-417 (in Chinese) [郑靖, 何佳  强机理研究[J]. 摩擦学学报(中英文), 2024, 44(8): 1032–1042].
                 欣, 雷磊, 等. 两种合金密封环与浸渍石墨配副损伤失效研究[J].                doi: 10.16078/j.tribology.2023118.
                 西南交通大学学报, 2025,60(02):411-417].               [36]   Yang Shuang, Chen Jiming, Fu Haiying, et al. Investigation on the
            [28]   Yuan  Feng,  Wei  Gaoyang,  Gao  Shurui,  et  al.  Tuning  the  pitting  microstructure  and  mechanical  properties  of  carbide  dispersion
                 performance of a Cr-13 type martensitic stainless steel by tempering  strengthened  steel[J].  Nuclear  Fusion  and  Plasma  Physics,  2021,
                 time[J].  Corrosion  Science,  2022,  203:  110346.  doi:  10.1016/j.  41(1): 61–66 (in Chinese) [杨爽, 谌继明, 付海英, 等. 碳化物弥散
                 corsci.2022.110346.                               强化钢力学性能及微观组织研究[J]. 核聚变与等离子体物理,
            [29]   Wu Yuchi, Lei Lei, Liu Mintang, et al. Bioinspired ceramic scaffold  2021, 41(1): 61–66]. doi: 10.16568/j.0254-6086.202101011.
                 reinforced  polytetrafluoroethylene  composite  and  its  tribological  [37]   Khallaf  A  H,  Bhlol  M,  Dawood  O  M,  et  al.  Wear  resistance,
                 properties[J]. Tribology, 2024,44(10):1429-1440 (in Chinese) [伍雨  hardness,  and  microstructure  of  carbide  dispersion  strengthened
                 驰, 雷磊, 刘旻帑, 等. 陶瓷框架增强聚四氟乙烯仿生复合材料及                 high-entropy  alloys[J].  Journal  of  Central  South  University,  2022,
                 其摩擦学性能研究[J]. 摩擦学学报(中英文), 2024,44(10):1429-        29(11): 3529–3543. doi: 10.1007/s11771-022-5181-8.
                 1440]. doi: 10.16078/j.tribology.2023215.     [38]   Zhao Gaopan, Zhang Penglin, Wang Wenzhen, et al. Influences and
            [30]   Wang Pengyu, Ye Lingying, Ke Bin, et al. Effect of grain structure  mechanisms of the alloying elements Ta and Ag on the mechanical
                 on  mechanical  and  corrosion  properties  of  Al-Zn-Mg  alloy[J].  and tribological properties of nickel-base alloys[J]. Tribology, 2021,
                 Materials Reports, 2023, 37(19): 173–179 (in Chinese) [王鹏宇, 叶  41(3): 393–403 (in Chinese) [赵高攀, 张鹏林, 王文珍, 等. 合金元
                 凌英, 柯彬, 等. 晶粒组织对Al-Zn-Mg合金力学性能和腐蚀性能               素Ta、Ag对镍基合金机械性能和摩擦学性能的影响及机理
                 的影响[J]. 材料导报, 2023, 37(19): 173–179]. doi: 10.11896/cldb.  研 究 [J].  摩 擦 学 学 报 ,  2021,  41(3):  393–403].  doi:  10.16078/j.
                 22050211.                                         tribology.2020163.
            [31]   Lu Jinwen, Zhao Yongqing, Ge Peng, et al. Growth behavior of β-  [39]   Song  Guangjie,  Zhu  Haoran,  Ji  Dengping,  et  al.  Analysis  of
                 phase  grain  and  influence  of  its  grain  size  on  hardness  in  Ti-Mo  inclusions and carbides in 102Cr 17 Mo bearing steel billet[J]. Iron &
                 alloys[J].  Rare  Metal  Materials  and  Engineering,  2013,  42(11):  Steel, 2023, 58(8): 157–168 (in Chinese) [宋光洁, 朱浩然, 季灯平,
                 2269–2273 (in Chinese) [卢金文, 赵永庆, 葛鹏, 等. Ti-Mo系钛合  等. 102Cr 17 Mo轴承钢铸坯夹杂物及碳化物解析[J]. 钢铁, 2023,
                 金β晶粒长大规律及晶粒尺寸对硬度的影响[J]. 稀有金属材料与                   58(8): 157–168]. doi: 10.13228/j.boyuan.issn0449-749x.20230065.
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