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                 of lubricant–film thickness using ultrasound[J]. Proceedings of the  [23]   Zhang  Kai,  Dou  Pan,  Wu  Tonghai,  et  al.  An  ultrasonic  measure-
                 Royal  Society  of  London  Series  A:  Mathematical,  Physical  and  ment method for full range of oil film thickness[J]. Proceedings of
                 Engineering Sciences, 2003, 459(2032): 957–976. doi: 10.1098/rspa.  the  Institution  of  Mechanical  Engineers,  Part  J:  Journal  of
                 2002.1018.                                        Engineering  Tribology,  2019,  233(3):  481–489.  doi:  10.1177/
            [15]   Dwyer-Joyce R S. The application of ultrasonic NDT techniques in  1350650118787038.
                 tribology[J]. Proceedings of the Institution of Mechanical Engineers,  [24]   Dou Pan, Zheng Peng, Jia Yaping, et al. Ultrasonic measurement of
                 Part  J:  Journal  of  Engineering  Tribology,  2005,  219(5):  347–366.  oil film thickness in a four-layer structure for applications including
                 doi: 10.1243/135065005x9763.                      sliding  bearings  with  a  thin  coating[J].  NDT  &  E  International,
            [16]   Reddyhoff T, Kasolang S, Dwyer-Joyce R S, et al. The phase shift of  2022, 131: 102684. doi: 10.1016/j.ndteint.2022.102684.
                 an  ultrasonic  pulse  at  an  oil  layer  and  determination  of  film  [25]   Yu  Mn,  Shen  L,  Mutasa  T,  et  al.  Exact  analytical  solution  to
                 thickness[J]. Proceedings of the Institution of Mechanical Engineers,  ultrasonic  interfacial  reflection  enabling  optimal  oil  film  thickness
                 Part  J:  Journal  of  Engineering  Tribology,  2005,  219(6):  387–400.  measurement[J].  Tribology  International,  2020,  151:  106522.  doi:
                 doi: 10.1243/135065005x34044.                     10.1016/j.triboint.2020.106522.
            [17]   Tattersall  H  G.  The  ultrasonic  pulse-echo  technique  as  applied  to  [26]   He  Yanbo,  Gao  Tianwen,  Guo  Ao,  et  al.  Lubricant  film  thickness
                 adhesion  testing[J].  Journal  of  Physics  D  Applied  Physics,  1973,  measurement  based  on  ultrasonic  reflection  coefficient  phase
                 6(7): 819–832. doi: 10.1088/0022-3727/6/7/305.    shift[J]. Tribology, 2021, 41(1): 1–8 (in Chinese) [贺彦博, 高天雯,
            [18]   Shi  Yong,  Qi  Songbo,  Zhao  Jianhui,  et  al.  Error  analysis  of  郭奥, 等. 基于超声波反射系数相移的油膜厚度测量方法研究[J].
                 ultrasonic method for measurement of oil film thickness[J]. Journal  摩擦学学报, 2021, 41(1): 1–8]. doi: 10.16078/j.tribology.2020054.
                 of  Harbin  Engineering  University,  2019,  40(3):  586–592  (in  [27]   Sun  Wei,  Liang  Peng,  Guo  Feng,  et  al.  Real-time  ultrasonic
                 Chinese) [石勇, 齐松博, 赵建辉, 等. 超声波测量油膜厚度方法误           measurement  method  of  dynamic  film  thickness  and  influencing
                 差分析[J]. 哈尔滨工程大学学报, 2019, 40(3): 586–592]. doi: 10.  factors  of  measurement  blind  area[J].  Tribology,  2024,  44(2):
                 11990/jheu.201710001.                             214–232 (in Chinese) [孙炜, 梁鹏, 郭峰, 等. 动态膜厚的超声实时
            [19]   Li  Xiang,  Ma  Xizhi,  Zhang  Bugao.  Theory  and  numerical  测量方法及测量盲区影响因素[J]. 摩擦学学报(中英 文), 2024,
                 calculation  of  acoustic  reflection  coefficient  for  oil  film  thickness  44(2): 214–232]. doi: 10.16078/j.tribology.2022248.
                 measurement[J]. Lubrication Engineering, 2018, 43(9): 13–18,27 (in  [28]   Jia Yaping, Wu Tonghai, Dou Pan, et al. Temperature compensation
                 Chinese) [李响, 马希直, 张步高. 油膜厚度超声测量声反射系数理            strategy  for  ultrasonic-based  measurement  of  oil  film  thickness[J].
                 论及数值计算[J]. 润滑与密封, 2018, 43(9): 13–18,27]. doi: 10.  Wear, 2021, 476: 203640. doi: 10.1016/j.wear.2021.203640.
                 3969/j.issn.0254-0150.2018.09.003.            [29]   Haines N F, Bell J C, McIntyre P J. The application of broadband
            [20]   Hunter A, Dwyer-Joyce R, Harper P. Calibration and validation of  ultrasonic spectroscopy to the study of layered media[J]. The Journal
                 ultrasonic  reflection  methods  for  thin-film  measurement  in  of the Acoustical Society of America, 1978, 64(6): 1645–1651. doi:
                 tribology[J].  Measurement  Science  and  Technology,  2012,  23(10):  10.1121/1.382131.
                 105605. doi: 10.1088/0957-0233/23/10/105605.  [30]   Chen Shitao, Xu Zhidong. Exploration of the law of sound velocity
            [21]   Glavatskih  S  B,  McCarthy  D  M  C,  Sherrington  I.  Hydrodynamic  changing  with  temperature  in  metal  materials[C]//Collected  Papers
                 performance  of  a  thrust  bearing  with  micropatterned  pads[J].  from  the  20th  Anniversary  Celebration  Conference  of  the  MMPH
                 Tribology  Transactions,  2005,  48(4):  492–498.  doi:  10.1080/  Interdisciplinary Research Society, 2006: 327–329 (in Chinese) [陈
                 05698190500313486.                                世涛, 徐志东. 金属材料中声速随温度变化规律的探讨[C]//
            [22]   Li  Pengju,  Zhu  Yongsheng,  Zhang  Youyun,  et  al.  Experimental  MMPH交叉学科研究学会成立二十周年庆祝会议文集, 2006:
                 study of the transient thermal effect and the oil film thickness of the  327–329].
                 equalizing  thrust  bearing  in  the  process  of  start-stop  with  load[J].  [31]   Demirli  R,  Saniie  J.  Model-based  estimation  of  ultrasonic  echoes.
                 Proceedings  of  the  Institution  of  Mechanical  Engineers,  Part  J:  Part I: analysis and algorithms[J]. IEEE Transactions on Ultrasonics
                 Journal  of  Engineering  Tribology,  2013,  227(1):  26–33.  doi:  10.  Ferroelectrics & Frequency Control, 2001, 48(3): 787. doi: 10.1109/
                 1177/1350650112458855.                            58.920713.
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