Torque effect on vibration behavior of high-speed train gearbox under internal and external excitations

IF 4.4 1区 工程技术 Q2 TRANSPORTATION SCIENCE & TECHNOLOGY Railway Engineering Science Pub Date : 2023-11-14 DOI:10.1007/s40534-023-00323-3
Yue Zhou, Xi Wang, Hongbo Que, Rubing Guo, Xinhai Lin, Siqin Jin, Chengpan Wu, Yu Hou
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Abstract

Abstract The high-speed train transmission system, experiencing both the internal excitation originating from gear meshing and the external excitation originating from the wheel–rail interaction, exhibits complex dynamic behavior in the actual service environment. This paper focuses on the gearbox in the high-speed train to carry out the bench test, in which various operating conditions (torques and rotation speeds) were set up and the excitation condition covering both internal and external was created. Acceleration responses on multiple positions of the gearbox were acquired in the test and the vibration behavior of the gearbox was studied. Meanwhile, a stochastic excitation modal test was also carried out on the test bench under different torques, and the modal parameter of the gearbox was identified. Finally, the sweep frequency response of the gearbox under gear meshing excitation was analyzed through dynamic modeling. The results showed that the torque has an attenuating effect on the amplitude of gear meshing frequency on the gearbox, and the effect of external excitation on the gearbox vibration cannot be ignored, especially under the rated operating condition. It was also found that the torque affects the modal parameter of the gearbox significantly. The torque has a great effect on both the gear meshing stiffness and the bearing stiffness in the transmission system, which is the inherent reason for the changed modal characteristics observed in the modal test and affects the vibration behavior of the gearbox consequently.

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内外激励下高速列车齿轮箱振动特性的转矩影响
高速列车传动系统在实际运行环境中,既有齿轮啮合产生的内部激励,又有轮轨相互作用产生的外部激励,表现出复杂的动力行为。本文以高速列车中的齿轮箱为研究对象进行台架试验,设置各种工况(转矩和转速),创建涵盖内外的激励条件。试验获得了齿轮箱多个位置的加速度响应,并对齿轮箱的振动特性进行了研究。同时,在试验台上进行了不同转矩下的随机激励模态试验,确定了齿轮箱的模态参数。最后,通过动力学建模分析了齿轮啮合激励下齿轮箱的扫频响应。结果表明:转矩对齿轮啮合频率幅值对齿轮箱有衰减作用,外部激励对齿轮箱振动的影响不容忽视,特别是在额定工况下。结果表明,转矩对齿轮箱的模态参数有显著影响。力矩对传动系统中齿轮啮合刚度和轴承刚度都有很大的影响,这是模态试验中观察到的模态特性发生变化的内在原因,从而影响齿轮箱的振动行为。
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来源期刊
Railway Engineering Science
Railway Engineering Science TRANSPORTATION SCIENCE & TECHNOLOGY-
CiteScore
10.80
自引率
7.90%
发文量
1061
审稿时长
15 weeks
期刊介绍: Railway Engineering Science is an international, peer-reviewed, and free open-access journal that publishes original research articles and comprehensive reviews related to fundamental engineering science and emerging technologies in rail transit systems, focusing on the cutting-edge research in high-speed railway, heavy-haul railway, urban rail transit, maglev system, hyperloop transportation, etc. The main goal of the journal is to maintain high quality of publications, serving as a medium for railway academia and industry to exchange new ideas and share the latest achievements in scientific research, technical innovation and industrial development in railway science and engineering. The topics include but are not limited to Design theory and construction technology System dynamics and safetyElectrification, signaling and communicationOperation and maintenanceSystem health monitoring and reliability Environmental impact and sustainabilityCutting-edge technologiesThe publication costs for Railway Engineering Science are fully covered by Southwest Jiaotong University so authors do not need to pay any article-processing charges.
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