Page 47 - 摩擦学学报2025年第4期
P. 47

第 4 期                 文武翊, 等: 高速航空锥齿轮线速度对喷油润滑流场与温度场影响研究                                      535

                 simulate  gears,  bearings,  and  pumps[J].  Applied  Sciences,  2020,  1767815.
                 10(24): 8810. doi: 10.3390/app10248810.       [21]   Simmons K, Johnson G, Wiedemann N. Effect of pressure and oil
            [10]   Liu Hua, Jurkschat T, Lohner T, et al. Detailed investigations on the  mist  on  windage  power  loss  of  a  shrouded  spiral  bevel  gear[J].
                 oil  flow  in  dip-lubricated  gearboxes  by  the  finite  volume  CFD  Journal of Engineering for Gas Turbines and Power, 2012, 134(8):
                 method[J].   Lubricants,   2018,   6(2):   47.   doi:   10.3390/  081202. doi: 10.1115/1.4005984.
                 lubricants6020047.                            [22]   Massini  D,  Fondelli  T,  Andreini  A,  et  al.  Experimental  and
            [11]   Liu  H,  Link  F,  Lohner  T,  et  al.  Computational  fluid  dynamics  numerical  investigation  on  windage  power  losses  in  high  speed
                 simulation  of  geared  transmissions  with  injection  lubrication[J].  gears[J]. Journal of Engineering for Gas Turbines and Power, 2018,
                 Proceedings  of  the  Institution  of  Mechanical  Engineers,  Part  C:  140(8): 082508. doi: 10.1115/1.4038471.
                 Journal  of  Mechanical  Engineering  Science,  2019,  233(21–22):  [23]   Hill  M  J,  Kunz  R  F,  Medvitz  R  B,  et  al.  CFD  analysis  of  gear
                 7412–7422. doi: 10.1177/0954406219865920.         windage  losses:  validation  and  parametric  aerodynamic  studies[J].
            [12]   Hildebrand L, Dangl F, Sedlmair M, et al. CFD analysis on the oil  Journal of Fluids Engineering, 2011, 133(3): 031103. doi: 10.1115/
                 flow of a gear stage with guide plate[J]. Forsch Ingenieurwes, 2022,  1.4003681.
                 86(3): 395–408. doi: 10.1007/s10010-021-00523-5.  [24]   Aktas M K, Yavuz M A, Ersan A K. Computational fluid dynamics
            [13]   Wang Yanzhong, Song Guanhua, Niu Wentao, et al. Influence of oil  simulations  of  windage  loss  in  a  spur  gear[C]//Volume  2C:
                 injection  methods  on  the  lubrication  process  of  high  speed  spur  Turbomachinery.  June  11–15,  2018.  Oslo,  Norway.  American
                 gears[J]. Tribology International, 2018, 121: 180–189. doi: 10.1016/  Society of Mechanical Engineers, 2018. doi:10.1115/gt2018-76828.
                 j.triboint.2018.01.062.                       [25]   Concli F, Gorla C. Windage, churning and pocketing power losses
            [14]   Keller M C, Kromer C, Cordes L, et al. CFD study of oil-jet gear  of  gears:  different  modeling  approaches  for  different  goals[J].
                 interaction  flow  phenomena  in  spur  gears[J].  The  Aeronautical  Forschung  Im  Ingenieurwesen,  2016,  80(3):  85–99.  doi:  10.1007/
                 Journal, 2020, 124(1279): 1301–1317. doi: 10.1017/aer.2020.44.  s10010-016-0206-9.
            [15]   Hashimoto  H,  Arisawa  H,  Kondo  K,  et  al.  Computational  fluid  [26]   Zhu  Xiang,  Dai  Yu,  Ma  Feiyue.  CFD  modelling  and  numerical
                 dynamics in a fan-drive gear system of an aeroengine[C]//Volume 1:  simulation  on  windage  power  loss  of  aeronautic  high-speed  spiral
                 Aircraft  Engine.  June  26–30,  2023.  Boston,  Massachusetts,  USA.  bevel  gears[J].  Simulation  Modelling  Practice  and  Theory,  2020,
                 American  Society  of  Mechanical  Engineers,  2023.  doi:10.1115/  103: 102080. doi: 10.1016/j.simpat.2020.102080.
                 gt2023-101589.                                [27]   Arisawa  H,  Tanaka  M,  Hashimoto  H,  et  al.  Applicability  of
            [16]   Townsend  D  P,  Akin  L  S.  Analytical  and  experimental  spur  gear  numerical  simulation  to  the  classification  of  fluid  dynamic  loss  in
                 tooth  temperature  as  affected  by  operating  variables[J].  Journal  of  aeroengine transmission gears[C]//Volume 1: Aircraft Engine. June
                 Mechanical  Design,  1981,  103(1):  219–226.  doi:  10.1115/1.  26–30,  2023.  Boston,  Massachusetts,  USA.  American  Society  of
                 3254868.                                          Mechanical Engineers, 2023. doi:10.1115/gt2023-100546.
            [17]   Massini D, Fondelli T, Facchini B, et al. Experimental Investigation  [28]   Dawson  P  H.  Windage  loss  in  larger  high-speed  gears[J].
                 on Power Losses due to Oil Jet Lubrication in High Speed Gearing  Proceedings  of  the  Institution  of  Mechanical  Engineers,  Part  A:
                 Systems[C]//Volume  5B:  Heat  Transfer.  June  26–30,  2017.  Power and Process Engineering, 1984, 198(1): 51–59. doi: 10.1243/
                 Charlotte,  North  Carolina,  USA.  American  Society  of  Mechanical  pime_proc_1984_198_007_02.
                 Engineers, 2017. doi:10.1115/gt2017-64703.    [29]   Deshpande S, Joshi H, Madhavan J, et al. Two-way coupled CFD
            [18]   Delgado I R, Hurrell M J. Baseline experimental results on the effect  approach  for  predicting  gear  temperature  of  oil  jet  lubricated
                 of  oil  temperature  on  shrouded  meshed  spur  gear  windage  power  transmissions[J].  SAE  International  Journal  of  Commercial
                 loss[C]//International  Design  Engineering  Technical  Conferences  Vehicles, 2018, 11(3): 163–170. doi: 10.4271/02-11-03-0013.
                 and  Computers  and  Information  in  Engineering  Conference.  [30]   Jiang  Xinghe,  Zhou  Changjiang,  Su  Jie,  et  al.  Injection  parameter
                 American  Society  of  Mechanical  Engineers,  August  6–9,  2017.  design  to  improve  the  high-speed  gear  heat  dissipation:  CFD
                 Cleveland,   Ohio,   USA.   58240:   V010T11A040.  simulation  and  regression  orthogonal  experiment[J].  Simulation
                 doi:10.1115/DETC2017-67818.                       Modelling Practice and Theory, 2023, 128: 102795. doi: 10.1016/j.
            [19]   Diab Y, Ville F, Velex P. Investigations on power losses in high-  simpat.2023.102795.
                 speed  gears[J].  Proceedings  of  the  Institution  of  Mechanical  [31]   Chen  Taimin,  Zhu  Caichao,  Liu  Huaiju,  et  al.  Simulation  and
                 Engineers, Part J: Journal of Engineering Tribology, 2006, 220(J3):  experiment of carburized gear scuffing under oil jet lubrication[J].
                 191–198. doi: 10.1243/13506501jet136.             Engineering  Failure  Analysis,  2022,  139:  106406.  doi:  10.1016/j.
            [20]   Diab  Y,  Ville  F,  Velex  P,  et  al.  Windage  losses  in  high  speed  engfailanal.2022.106406.
                 gears —preliminary  experimental  and  theoretical  results[J].  Journal  [32]   Chen  Taimin,  Wei  Peitang,  Zhu  Caichao,  et  al.  Experimental
                 of  Mechanical  Design,  2004,  126(5):  903–908.  doi:  10.1115/1.  investigation of gear scuffing for various tooth surface treatments[J].
   42   43   44   45   46   47   48   49   50   51   52