Page 159 - 《摩擦学学报》2021年第6期
P. 159

944                                     摩   擦   学   学   报                                 第 41 卷

             表 5    图8中与Z1涂层在不同温度对摩的Al 2 O 3 球磨损表面             [  7  ]  Erdemir A. A crystal chemical approach to the formulation of self-
                        不同位置的元素组成(P1~P8)                           lubricating  nanocomposite  coatings[J].  Surface  and  Coatings
              Table 5    The chemical composition of worn surface of  Technology,  2005,  200(5-6):  1792–1796.  doi:  10.1016/j.surfcoat.
                 Al 2 O 3  balls sliding against Z1 coating at elevated
                                                                   2005.08.054.
                       temperatures in Fig. 8 (P1~P8)
                                                               [  8  ]  Prakash  B,  Celis  J  P.  The  lubricity  of  oxides  revised  based  on  a

                                  Atomic fraction/%
               Point                                               polarisability approach[J]. Tribology Letters, 2007, 27(1): 105–112.
                       Ni      Al     Mo      Zn      O
                                                                   doi: 10.1007/s11249-007-9223-z.
               P1     58.79    5.55   1.33   1.20   33.13
                                                               [  9  ]  Li Zhen, Zhang Yali, Zhou Jiansong, et al. Tribological properties of
               P2     42.14    5.97   0.58   1.19   50.13
               P3     39.01    6.85   1.20   0.88   52.05          Ni-based high temperature self-lubricating composite[J]. Tribology,
               P4     39.75    6.97   1.21   0.99   51.07          2018, 38(2): 161–169 (in Chinese) [李珍, 张亚丽, 周健松, 等. Ni-
               P5     57.01   41.19   0.42   0.07   57.01
                                                                   Mo基高温自润滑复合材料摩擦学性能的研究[J]. 摩擦学学报,
               P6     39.03    8.16   1.79   0.95   50.06
                                                                   2018, 38(2): 161–169]. doi: 10.16078/j.tribology.2018.02.006.
               P7     29.55   18.63   1.71   2.02   48.09
                                                               [10]  Ouyang Jiahu, Shi Chengcheng, Liu Zhanguo, et al. Fabrication and
               P8      5.81    7.92   5.77   0.66   79.84
                                                                   high-temperature  tribological  properties  of  self-lubricating  NiCr-
                                                                   BaMoO 4   composites[J].  Wear,  2015,  330-331:  272–279.  doi:  10.
            膜中的生成,与MoO 和ZnO的协同作用使得涂层在
                              3
                                                                   1016/j.wear.2015.01.063.
            800 ℃具有优异的摩擦学性能.
                                                               [11]  Ouyang  J  H,  Sasaki  S,  Umeda  K.  The  friction  and  wear
            参 考 文 献                                                characteristics  of  low-pressure  plasma-sprayed  ZrO 2 -BaCrO 4
                                                                   composite coating at elevated temperatures[J]. Surface and Coatings
            [  1  ]  Liu Eryong, Jia Junhong, Gao Yimin, et al. Progress of continuous
                                                                   Technology,  2002,  154(2-3):  131–139.  doi:  10.1016/S0257-8972
                 lubricating  materials  over  a  wide  temperature  range[J].  China
                                                                   (02)00024-5.
                 Surface Engineering, 2015, 28(4): 1–13 (in Chinese) [刘二勇, 贾均
                                                               [12]  Yang  Jingjing,  Shan  Yu,  Fu  Yingying,  et  al.  Effects  of  in  situ
                 红, 高义民, 等. 宽温域连续润滑材料的研究进展[J]. 中国表面工
                                                                   synthesis  nanoscale  Ag/Ag 2 MoO 4   composite  lubricants  on
                 程, 2015, 28(4): 1–13]. doi: 10.11933/j.issn.1007-9289.2015.04.001.
                                                                   tribological properties of YSZ coatings[J]. Tribology, 2019, 39(6):
            [  2  ]  Torres  H,  Rodríguez  R  M,  Prakash  B.  Tribological  behaviour  of
                                                                   756–765  (in Chinese)  [杨 晶 晶 ,  陕 钰 ,  付 英 英 ,  等 .  原 位 合 成
                 self-lubricating  materials  at  high  temperatures[J].  International
                                                                   Ag/Ag 2 MoO 4 纳米复合润滑剂对YSZ涂层摩擦学性能的影响[J].
                 Materials  Reviews,  2018,  63(5):  309–340.  doi:  10.1080/09506608.
                                                                   摩 擦 学 学 报 ,  2019,  39(6):  756–765].  doi:  10.16078/j.tribology.
                 2017.1410944.
                                                                   2019048.
            [  3  ]  Li  Wensheng,  Fan  Xiangjuan,  Yang  Jun,  et  al.  Preparation  and
                                                               [13]  Wang  Xinpeng,  Yi  Gewen,  Jia  Junhong,  et  al.  Preparation  and
                 tribological  properties  of  Ni 3 Al  matrix  self-lubricating  composite
                                                                   tribological properties of NiAl-TiO 2 /Bi 2 O 3  nanocomposite coatings
                 coating[J]. Tribology, 2018, 38(6): 626–634 (in Chinese) [李文生,
                                                                   in  wide  temperature  range[J].  Tribology,  2018,  38(5):  570–576
                 范祥娟, 杨军, 等. Ni 3 Al基高温自润滑复合涂层的制备和摩擦学              (in Chinese) [王新鹏, 易戈文, 贾均红, 等. NiAl-TiO 2 /Bi 2 O 3 纳米复
                 性 能 [J].  摩 擦 学 学 报 ,  2018,  38(6):  626–634].  doi:  10.16078/j.
                                                                   合涂层制备及宽温域摩擦磨损性能[J]. 摩擦学学报, 2018, 38(5):
                 tribology.2018033.
                                                                   570–576]. doi: 10.16078/j.tribology.2018.05.010.
            [  4  ]  Liu Xiaohong, Lu Xiaowei, He Nairu, et al. Influence of annealing  [14]  Li Bo, Gao Yimin, Hou Xiaohu, et al. Microstructure, mechanical
                 temperature on structure and high temperature tribological properties  and tribological properties of NiAl matrix composites with addition
                 of  chromium  oxide  films[J].  Tribology,  2019,  39(2):  164–170
                                                                   of  BaO/TiO 2   binary  oxides[J].  Tribology  International,  2020,  144:
                 (in Chinese) [刘晓红, 卢小伟, 何乃如, 等. 退火温度对氧化铬薄膜        106108. doi: 10.1016/j.triboint.2019.106108.
                 结构和高温摩擦学性能的影响[J]. 摩擦学学报, 2019, 39(2):         [15]  Yao  Qianqian,  Jia  Junhong,  Chen  Tijun,  et  al.  High  temperature
                 164–170]. doi: 10.16078/j.tribology.2018178.      tribological  behaviors  and  wear  mechanisms  of  NiAl-MoO 3 /CuO
            [  5  ]  Song  Junjie,  Fan  Hengzhong,  Su  Yunfeng,  et  al.  Tribological  composite coatings[J]. Surface and Coatings Technology, 2020, 395:
                                                                   125910. doi: 10.1016/j.surfcoat.2020.125910.
                 properties  and  lubrication  mechanism  of  Al 2 O 3 /graphite –BaSO 4
                 laminated  composites[J].  Tribology,  2019,  39(6):  723–729  [16]  Shi  Peiying,  Wan  Shanhong,  Yi  Gewen,  et  al.  TiO 2 -ZnO/Ni-5wt.
                 (in Chinese) [宋俊杰, 樊恒中, 苏云峰, 等. 氧化铝/石墨-硫酸钡层       %Al  composite  coatings  on  GH4169  superalloys  by  atmospheric
                 状复合材料的摩擦学性能及润滑机理[J]. 摩擦学学报, 2019,                 plasma spray techniques and theirs elevated-temperature tribological
                 39(6): 723–729]. doi: 10.16078/j.tribology.2019071.  behavior[J]. Ceramics International, 2020, 46(9): 13527–13538. doi:
            [  6  ]  Erdemir  A.  crystal-chemical  approach  to  lubrication  by  solid  10.1016/j.ceramint.2020.02.138.
                 oxides[J]. Tribology Letters, 2000, 8(2-3): 97–102. doi: 10.1023/A:  [17]  Essa F A, Zhang Qiaoxin, Huang Xingjiu, et al. Effects of ZnO and
                 1019183101329.                                    MoS 2  solid lubricants on mechanical and tribological properties of
   154   155   156   157   158   159   160   161   162   163   164