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

            [  3  ]   Yang  Junying,  Gao  Fei,  Sun  Ye,  et  al.  Influence  of  geometry  of  s11249-021-01497-9.
                 brake  pad  on  disc  temperature  and  friction  performance[J].  The  [11]   Wu Y K, Tang B, Xiang Z Y, et al. Brake squeal of a high-speed
                 Chinese Journal of Nonferrous Metals, 2018, 28(7): 1351–1360 (in  train  for  different  friction  block  configurations[J].  Applied
                 Chinese) [杨俊英, 高飞, 孙野, 等. 闸片摩擦块形状对制动盘温度           Acoustics, 2021, 171: 107540. doi: 10.1016/j.apacoust.2020.107540.
                 及摩擦性能的影响[J]. 中国有色金属学报, 2018, 28(7): 1351–     [12]   Meng Fanhui, Liu Yan, Wu Ying, et al. Research on finite element
                 1360]. doi: 10.19476/j.ysxb.1004.0609.2018.07.10.  simulation  of  braking  process  of  high  speed  train  brake  disc  and
            [  4  ]   Wang Guoshun. The influence of friction block distribution mode on  influence of surface scratch on stress field[J]. Journal of Mechanical
                 temperature  and  stress  field  of  friction  disk[J].  Lubrication  Engineering, 2018, 54(12): 42–48 (in Chinese) [孟繁辉, 刘艳, 吴影,
                 Engineering, 2014, 39(3): 43–47 (in Chinese) [王国顺. 摩擦块分布  等. 高速列车制动盘制动过程的有限元模拟及表面划伤对应力场
                 方式对摩擦盘温度场和应力场的影响[J]. 润滑与密封, 2014,                 的影响研究[J]. 机械工程学报, 2018, 54(12): 42–48]. doi: 10.3901/
                 39(3): 43–47]. doi: 10.3969/j.issn.0254-0150.2014.03.010.  JME.2018.12.042.
            [  5  ]   Sinou J J, Jézéquel L. Mode coupling instability in friction-induced  [13]   Stender  M,  Oberst  S,  Tiedemann  M,  et  al.  Complex  machine
                 vibrations  and  its  dependency  on  system  parameters  including  dynamics:  systematic  recurrence  quantification  analysis  of  disk
                 damping[J].  European  Journal  of  Mechanics  -  A,  2007,  26(1):  brake  vibration  data[J].  Nonlinear  Dynamics,  2019,  97(4):  2483–
                 106–122. doi: 10.1016/j.euromechsol.2006.03.002.  2497. doi: 10.1007/s11071-019-05143-x.
            [  6  ]   Panier  S,  Dufrenoy  P,  Bremond  P.  Infrared  characterization  of  [14]   Stender M, Tiedemann M, Hoffmann L, et al. Determining growth
                 thermal  gradients  on  disc  brakes[C]//Conference  on  Thermosense  rates  of  instabilities  from  time-series  vibration  data:  methods  and
                 XXV, Orlando, 2003, 5073: 295–302. doi: 10.1117/12.487699.  applications  for  brake  squeal[J].  Mechanical  Systems  and  Signal
            [  7  ]   Tang  B,  Mo  J  L,  Xu  J  W,  et  al.  Effect  of  perforated  structure  of  Processing, 2019, 129: 250–264. doi: 10.1016/j.ymssp.2019.04.009.
                 friction  block  on  the  wear,  thermal  distribution  and  noise  [15]   Zhang  Lijun,  Huang  Meng.  Stability  and  bifurcation  of  nonlinear
                 characteristics  of  railway  brake  systems[J].  Wear,  2019,  426–427:  frictional  oscillation  of  automotive  wiper  system[J].  Tribology,
                 1176–1186. doi:10.1016/j.wear.2019.01.016.        2012, 32(1): 82–88 (in Chinese) [张立军, 黄萌. 雨刮器非线性摩擦
            [  8  ]   Xiang Z Y, Chen W, Mo J L, et al. The effects of the friction block  振动的稳定性与分岔特性[J]. 摩擦学学报, 2012, 32(1): 82–88].
                 shape  on  the  tribological  and  dynamical  behaviours  of  high-speed  doi: 10.16078/j.tribology.2012.01.017.
                 train brakes[J]. International Journal of Mechanical Sciences, 2021,  [16]   Wang D W, Mo J L, Ouyang H, et al. Experimental and numerical
                 194: 106184. doi: 10.1016/j.ijmecsci.2020.106184.  studies  of  friction-induced  vibration  and  noise  and  the  effects  of
            [  9  ]   Xiang  Zaiyu,  Fan  Zhiyong,  Liu  Qi’ang,  et  al.  Effect  of  brake  pad  groove-textured  surfaces[J].  Mechanical  Systems  and  Signal
                 friction  block  shape  on  tribological  behavior  of  brake  interface  of  Processing,  2014,  46(2):  191–208.  doi:  10.1016/j.ymssp.2014.02.
                 high-speed train[J]. Tribology, 2021, 41(1): 95–104 (in Chinese) [项  007.
                 载毓, 范志勇, 刘启昂, 等. 高速列车制动闸片摩擦块形状对制动             [17]   Pan  Wujiu,  Li  Xiaopeng,  Wang  Xue,  et  al.  Effects  of  contact
                 界面摩擦学行为的影响[J]. 摩擦学学报, 2021, 41(1): 95–104]. doi:  damping  of  joint  surfaces  on  instability  of  a  mode-coupled
                 10.16078/j.tribology.2020038.                     system[J]. Journal of Vibration and Shock, 2017, 36(17): 16–20,41
            [10]   Yin  J  B,  Wu  Y  K,  Lu  C,  et  al.  The  influence  of  friction  blocks  (in Chinese) [潘五九, 李小彭, 王雪, 等. 结合面接触阻尼对模态耦
                 connection  configuration  on  high-speed  railway  brake  systems  合系统不稳定性影响[J]. 振动与冲击, 2017, 36(17): 16–20,41].
                 performance[J]. Tribology Letters, 2021, 69(4): 122. doi: 10.1007/  doi: 10.13465/j.cnki.jvs.2017.17.003.
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