Page 30 - 《摩擦学学报》2021年第2期
P. 30

第 2 期                柴利强, 等: γ辐照对a-C: H薄膜微观组织、力学性能及摩擦学性能的影响                                  175

            [  8  ]  Liechtenstein  V  K,  Ivkova  T  M,  Olshanski  E  D,  et  al.  Recent  [16]  Wei Q, Narayan R J, Sharma A K, et al. Preparation and mechanical
                 investigations and applications of thin diamond-like carbon (DLC)  properties  of  composite  diamond-like  carbon  thin  films[J].  Journal
                 foils[J].  Nuclear  Instruments  and  Methods  in  Physics  Research  of  Vacuum  Science  &  Technology  A  Vacuum  Surfaces  &  Films,
                 Section  A:  Accelerators,  Spectrometers,  Detectors  and  Associated  1999, 17(6): 3406–3414.
                 Equipment, 2004, 521(1): 197–202.             [17]  Ferrari  A  C,  Robertson  J.  Interpretation  of  raman  spectra  of
            [  9  ]  Xu J, Duan Z, Qiao L, et al. Nonuniform transitions of heavy-ion  disordered  and  amorphous  carbon[J].  Physical  Review  B,  2000,
                 irradiated  a-C:  H  films  in  depth  direction-Structure  and  antiwear  61(20): 14095–14107. doi: 10.1103/PhysRevB.61.14095.
                 property degradation analysis[J]. Carbon, 2019, 146: 200–209. doi:  [18]  Zhang S, Zeng X T, Xie H, et al. A phenomenological approach for
                 10.1016/j.carbon.2019.02.009.                                  3
                                                                   the I D /I G  ratio and sp  fraction of magnetron sputtered a-C films[J].
            [10]  Reinke, Francz, Oelhafen, et al. Structural changes in diamond and
                                                                   Surface  and  Coatings  Technology,  2000,  123(2-3):  256–260.  doi:
                 amorphous  carbon  induced  by  low-energy  ion  irradiation[J].
                                                                   10.1016/S0257-8972(99)00523-X.
                 Physical  Review  B,  Condensed  Matter,  1996,  54(10):  7067–7073.
                                                               [19]  Casiraghi  C,  Ferrari  A  C,  Robertson  J.  Raman  spectroscopy  of
                 doi: 10.1103/physrevb.54.7067.
                                                                   hydrogenated  amorphous  carbons[J].  Physical  Review  B,  2005,
            [11]  Ding  Furong,  Ban  Yong,  Xia  Zonghuang.  Radiation  physics[M].
                                                                   72(8): 085401. doi: 10.1103/PhysRevB.72.085401.
                 Beijing: Peking University Press, 2004(in Chinese) [丁富荣, 班勇,
                                                               [20]  Houska  J,  Klemberg-Sapieha  J  E,  Martinu  L.  Formation  and
                 夏宗璜.辐射物理[M].北京: 北京大学出版社, 2004].
                                                                   behavior  of  unbonded  hydrogen  in  a-C:H  of  various  compositions
                                                 60
            [12]  Zhao  Chunqing,  Liu  Yuming,  Nie  Xiangyu,  et  al.  Co  radiation
                                                                   and densities[J]. Surface & Coatings Technology, 2009, 203: 3770.
                 effects on the mechanical properties of heat-shrinkable sleeves for
                                                               [21]  B  Dischler,  A  Bubenzer,  P  Koidl.  Hard  carbon  coatings  with  low
                 satellites[J].  Equipment  Environmental  Engineering,  2016,  13(4):
                                                                   optical  absorption[J].  Applied  Physics  Letters,  1983,  42:  636.  doi:
                 180–184 (in Chinese) [赵春晴, 刘宇明, 聂翔宇, 等. 星用热缩套管
                                                                   10.1063/1.94056.
                 力学性能钴源辐照效应研究[J]. 装备环境工程, 2016, 13(4):
                                                               [22]  Chu P K, Li M. Characterization of amorphous and nanocrystalline
                 180–184].
                                                                   carbon  films[J].  Materials  Chemistry  and  Physics,  2006,  96(2-3):
            [13]  Chai L, Jiang H, Zhang B, et al. Influence of the gamma irradiation
                                                                   253–277. doi: 10.1016/j.matchemphys.2005.07.048.
                 dose  on  tribological  property  of  polytetrafluoroethylene[J].
                                                               [23]  Charitidis C A. Nanomechanical and nanotribological properties of
                 Tribology International, 2020, 144: 106094. doi: 10.1016/j.triboint.
                                                                   carbon-based  thin  films:  A  review[J].  International  Journal  of
                 2019.106094.
                                                                   Refractory Metals & Hard Materials, 2010, 28(1): 51–70.
            [14]  Yang  Jianqun,  Liu  Yong,  Ye  Zhuyu,  et  al.  Effect  of  gamma
                 irradiation on friction and wear behavior of MoS 2 /graphite coatings  [24]  Wang C, Ho K. Structural trends in amorphous carbon[J]. Physical
                 in  vacuum[C]//Advanced  Tribology,  2010:  630-632.  doi:  10.1007/  Review B, 1994, 50: 12429. doi: 10.1103/PhysRevB.50.12429.
                 978-3-642-03653-8_205.                        [25]  Donnet  C,  Erdemir  A.  Tribology  of  diamond-like  carbon  films:
            [15]  Xiong D, Ma R, Lin J, et al. Tribological properties and structure of  Fundamentals  and  applications[M].  New  York:  Springer  Verlag,
                 ultra-high molecular weight polyethylene after gamma irradiation[J].  2008.
                 Proceedings  of  the  Institution  of  Mechanical  Engineers,  Part  J:  [26]  Schwan J, Ulrich S, Theel T, et al. Stress-induced formation of high-
                 Journal  of  Engineering  Tribology,  2007,  221(3):  315–320.  doi:  density amorphous carbon thin films[J]. Journal of Applied Physics,
                 10.1243/13506501JET227.                           1997, 82: 6024–6030. doi: 10.1063/1.366469.
   25   26   27   28   29   30   31   32   33   34   35