Page 80 - 摩擦学学报2025年第5期
P. 80

714                                    摩擦学学报(中英文)                                        第 45 卷

                 022-0670-1.                                       1021/acsami.1c22502.
            [16]   Xu  Xing,  Shu  Xianwei,  Pei  Qi,  et  al.  Effects  of  porosity  on  the  [23]   Li  Jinbang,  Xia  Renliang,  Hua  Licheng,  et  al.  A  double-contact
                 tribological  and  mechanical  properties  of  oil-impregnated  friction testing machine and its application in testing the friction and
                 polyimide[J].  Tribology  International,  2022,  170:  107502.  doi:  10.  wear  properties  of  porous  polyimide[J].  Tribology,  2023,  43(7):
                 1016/j.triboint.2022.107502.                      768–777 (in Chinese) [李锦棒, 夏仁良, 华李成, 等. 1种双配副摩
            [17]   Ding  Jinghong,  Yang  Chang,  Wang  Zitong,  et  al.  3D  printing  of  擦试验机及其在多孔聚酰亚胺摩擦磨损测试方面的应用[J]. 摩擦
                 porous thermosetting polyimide composite with oil impregnated[J].  学学报, 2023, 43(7): 768–777]. doi: 10.16078/j.tribology.2022073.
                 Tribology, 2022, 42(5): 888–899 (in Chinese) [丁镜红, 杨昌, 王梓
                                                               [24]   Li Jinbang, Liu Jinyang, Li Kai, et al. Tribological properties of oil-
                 桐, 等. 3D打印多孔热固性聚酰亚胺含油复合材料[J]. 摩擦学学
                                                                   impregnated  polyimide  in  double-contact  friction  under  micro-oil
                 报, 2022, 42(5): 888–899]. doi: 10.16078/j.tribology.2021095.
                                                                   lubrication conditions[J]. Friction, 2023, 11(8): 1493–1504. doi: 10.
            [18]   Zhang  Di,  Wang  Chao,  Wang  Qihua,  et  al.  High  thermal  stability
                                                                   1007/s40544-022-0693-7.
                 and wear resistance of porous thermosetting heterocyclic polyimide
                                                               [25]   Wu Nan, Zong Zhimin, Fei Yiwei, et al. Thermal oxidation stability
                 impregnated with silicone oil[J]. Tribology International, 2019, 140:
                                                                   of poly-α-olefin lubricating oil[J]. Asia-Pacific Journal of Chemical
                 105728. doi: 10.1016/j.triboint.2019.04.012.
                                                                   Engineering, 2017, 12(5): 813–817. doi: 10.1002/apj.2121.
            [19]   Zhang Di, Wang Tingmei, Wang Qihua, et al. Selectively enhanced
                                                               [26]   Wu Yanxia, Li Weimin, Zhang Ming, et al. Oxidative degradation of
                 oil  retention  of  porous  polyimide  bearing  materials  by  direct
                                                                   synthetic  ester  and  its  influence  on  tribological  behavior[J].
                 chemical  modification[J].  Journal  of  Applied  Polymer  Science,
                                                                   Tribology  International,  2013,  64:  16–23.  doi:  10.1016/j.triboint.
                 2017, 134(29): 45106. doi: 10.1002/app.45106.
                                                                   2013.02.002.
            [20]   Yin Yang, Shi Pengfei, Zhang Shaohua, et al. Improving tribological
                                                               [27]   Rozenberg M, Loewenschuss A, Marcus Y. IR spectra and hydration
                 performance  of  porous  polyimide  by  surface  polishing[J].  ACS
                                                                   of short-chain polyethyleneglycols[J]. Spectrochimica Acta Part A:
                 Applied  Polymer  Materials,  2023,  5(9):  6808–6816.  doi:  10.1021/
                                                                   Molecular  and  Biomolecular  Spectroscopy,  1998,  54(12):
                 acsapm.3c00795.
                                                                   1819–1826. doi: 10.1016/s1386-1425(98)00062-6.
            [21]   Xu  Mingkun,  Guo  Lihe,  Ruan  Hongwei,  et  al.  Design  and  pore
                                                               [28]   Hu  Z  S,  Dong  J  X,  Chen  G  X.  Study  on  antiwear  and  reducing
                 properties  tuning  of  two-scale  porous  polyimide  fabricated  by
                 isostatic  pressing  for  improving  oil  storage  and  tribological  friction  additive  of  nanometer  ferric  oxide[J].  Tribology
                 properties[J].  Advanced  Engineering  Materials,  2023,  25(8):  International,  1998,  31(7):  355–360.  doi:  10.1016/s0301-679x(98)
                 2201421. doi: 10.1002/adem.202201421.             00042-5.
            [22]   Ruan  Hongwei,  Shao  Mingchao,  Zhang  Yaoming,  et  al.  [29]   Sun Meijiao, Wang Xiaoqiang, Ye Zhengyu, et al. Highly thermal
                 Supramolecular  oleogel-impregnated  macroporous  polyimide  for  conductive  graphite  films  derived  from  the  graphitization  of
                 high capacity of oil storage and recyclable smart lubrication[J]. ACS  chemically imidized polyimide films[J]. Nanomaterials, 2022, 12(3):
                 Applied Materials & Interfaces, 2022, 14(8): 10936–10946. doi: 10.  367. doi: 10.3390/nano12030367.
   75   76   77   78   79   80   81   82   83   84   85