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兰州交通大学 机电工程学院, 甘肃 兰州 730070
毛东进(1997— ),男,陕西西安人,硕士研究生;研究方向为机械零部件疲劳可靠性及CAD/CAE研究;1756899907@qq.com。
商跃进(1969— ),男,河北沧州人,教授,硕士生导师;研究方向为机车车辆零部件疲劳可靠性及CAD/CAE;shangyj@mail.lzjtu.cn。
纸质出版日期:2023-01-15,
收稿日期:2021-12-11,
修回日期:2022-01-20,
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毛东进,商跃进,薛海等.高速列车齿式联轴器CAD/CAE一体化设计[J].机械传动,2023,47(01):62-68.
Mao Dongjin,Shang Yuejin,Xue Hai,et al.CAD/CAE Integrated Design of High-speed Train Gear Couplings[J].Journal of Mechanical Transmission,2023,47(01):62-68.
毛东进,商跃进,薛海等.高速列车齿式联轴器CAD/CAE一体化设计[J].机械传动,2023,47(01):62-68. DOI: 10.16578/j.issn.1004.2539.2023.01.009.
Mao Dongjin,Shang Yuejin,Xue Hai,et al.CAD/CAE Integrated Design of High-speed Train Gear Couplings[J].Journal of Mechanical Transmission,2023,47(01):62-68. DOI: 10.16578/j.issn.1004.2539.2023.01.009.
为提高高速列车齿式联轴器的设计效率,优化设计结构,利用CAD/CAE技术开展了一体化设计。利用CAD软件对驱动装置进行三维设计及虚拟装配,并对驱动装置进行运动仿真分析,得到牵引电机在额定转速和最高转速两种运营条件下轮对线速度的大小;采用CAE软件对鼓形齿联轴器进行静强度分析及安全校核,以确保其服役安全性。结果表明,牵引电机在额定转速和最高转速下车轮线速度分别为243.3 km/h和349.1 km/h,满足高速运行条件;鼓形齿联轴器在平衡工况和最大角向位移工况下最大应力分别为391 MPa和403 MPa,满足安全运行的要求。提出的联轴器CAD/CAE一体化设计方法,为其结果优化提供了参考依据。
In order to improve the design efficiency of high-speed train gear coupling and optimize the design structure
the CAD/CAE technology is used to carry out the integrated design. The CAD software is used to design and virtually assemble the drive device and a motion simulation analysis of the drive device is conducted
which produce the wheel set linear speed of the traction motor under the rated speed and the maximum speed. The CAE software is used to adjust the drum gear. The coupling is subjected to static strength analysis and safety check to ensure its safety in service; the results show that the linear wheel speed of the traction motor is 243.3 km/h at the rated speed and 349.1 km/h at the maximum speed
respectively
which satisfy high-speed operating conditions. The maximum stress of the drum-shaped gear coupling under balanced conditions and maximum angular displacement conditions are 391 MPa and 403 MPa respectively
which meet the requirements of safe operation. The above-mentioned coupling CAD/CAE integrated design method provides a reference for its optimization.
高速列车驱动装置鼓形齿联轴器CAD/CAE一体化设计
High-speed trainDriving deviceDrum-shaped gear couplingCAD/CAE integrated design
缪炳荣,张卫华,池茂儒,等.下一代高速列车关键技术特征分析及展望[J].铁道学报,2019,41(3):58-70.
MIAO Bingrong,ZHANG Weihua,CHI Maoru,et al.Analysis and prospects of key technical features of next generation high speed trains[J].Journal of the China Railway Society,2019,41(3):58-70.
MALIK S,KUMAR V,GAHLOT P.An analogy between conventional and unorthodox CAD methods[J].Materials Today:Proceedings,2021,43(P2):2098-2104.
KHAN M T H,REZWANA S.A review of CAD to CAE integration with a hierarchical data format (HDF)-based solution[J].Journal of King Saud University-Engineering Sciences,2020,33(4):248-258.
林超,赵相路,曾东.端曲面齿联轴器的创成原理及设计[J].中南大学学报(自然科学版),2016,47(11):3707-3714.
LIN Chao,ZHAO Xianglu,ZENG Dong.Constructing principle and design of curved-face gear coupling[J].Journal of Central South University(Science and Technology),2016,47(11):3707-3714.
李琳,范雨.基于疲劳寿命理论的膜盘联轴器型面设计[J].北京航空航天大学学报,2010,36(12):1480-1484.
LI Lin,FAN Yu.Molding surface design of membranous disc couplings based on fatigue life analysis[J].Journal of Beijing University of Aeronautics and Astronautics,2010,36(12):1480-1484.
陈刚.CAD/CAE技术在壳体联轴器铸造工艺中的应用[J].热加工工艺,2016,45(17):85-87.
CHEN Gang.Application of CAD/CAE technology in shell couplings casting process[J].Hot Working Technology,2016,45(17):85-87.
苏进展,杨小辉,关亚彬,等.大型船用鼓形齿联轴器的有限元分析[J].机械传动,2017,41(5):64-66.
SU Jinzhan,YANG Xiaohui,GUAN Yabin,et al.Finite elements analysis of large marine crown gear coupling[J].Journal of Mechanical Transmission,2017,41(5):64-66.
杨福芹,蒋典兵,李松梅,等.轮胎式联轴器改进结构的设计与研究[J].机械传动,2017,41(1):166-168.
YANG Fuqin,JIANG Dianbing,LI Songmei,et al.Design and research of the improved structure of tire coupling[J].Journal of Mechanical Transmission,2017,41(1):166-168.
屈文涛,沈允文,徐建宁.基于ANSYS的双圆弧齿轮接触应力有限元分析[J].农业机械学报,2006(10):139-141.
QU Wentao,SHEN Yunwen,XU Jianning.Finite element analysis of contact stress for double arc gear besed on ANSYS[J].Transactions of the Chinese Society for Agricultural Machinery,2006(10):139-141.
张媛,王宗彦,吴淑芳.基于SolidWorks配置技术鼓形齿式联轴器参数化设计[J].煤矿机械,2014,35(7):259-261.
ZHANG Yuan,WANG Zongyan,WU Shufang.Parameter design of drum gear coupling based on configuration of SolidWorks[J].Coal Mine Machinery,2014,35(7):259-261.
陈海.日本E2系-1000型新干线电动车组[J].国外铁道车辆,2005,42(5):1-7.
CHEN Hai.The E2 series-1000 shinkansen EMUs in Japan[J].Foreign Rolling Stock,2005,42(5):1-7.
张海涛,钟文生.高速动车组用鼓形齿式联轴器强度分析[J].铁道车辆,2008(6):1-3.
ZHANG Haitao,ZHONG Wensheng.Strength analysis of drum gear coupling for high speed EMU[J].Rolling Stock,2008(6):1-3.
齿轮手册编委会.齿轮手册:8[M].北京:机械工业出版社,1990:20-26,215-217.
Gear Manual Editorial Board.Manual gear:8[M].Beijing:China Machine Press,1990:20-26,215-217.
全国齿轮标准化技术委员会.直齿轮和斜齿轮承载能力计算 第3部分:轮齿弯曲强度计算:GB/T 3480.3—2021[S].北京:中国标准出版社,2021:9-15.
National Technical Committee of Gear Standardization.Calculation of load capacity of spur and helical gears-part 3:calculation of tooth bending strength:GB/T 3480.3—2021[S].Beijing:Standards Press of China,2021:9-15.
王弘,高庆.40Cr钢超高周疲劳性能及疲劳断口分析[J].中国铁道科学,2003(6):94-99.
WANG Hong,GAO Qing.Study on the gigacycle fatigue behaviors and fracture surface of 40Cr steel[J].China Railway Science,2003(6):94-99.
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