Investigation of Gear Meshing Vibration and Meshing Impact Resonance Intensity Assessment

IF 1.9 4区 工程技术 Q3 ENGINEERING, MECHANICAL Journal of Computational and Nonlinear Dynamics Pub Date : 2024-03-13 DOI:10.1115/1.4065059
Ning Tang, Xinyu Huang, Yuanyuan Huang, Shuiguang Tong, Feiyun Cong
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Abstract

Gear drive is one of the most widely used transmission forms. Its vibration analysis plays an important role in design and operation. Considering the gear meshing resonance phenomenon (MRP), the paper analyzes the influences of rotating speed and load on meshing resonance intensity (MRI). Based on the gear meshing impact mechanism, meshing force variation during the engagement process were obtained. It was considered as meshing impacts exerted on the gear system. By comparing the maximum meshing force under different circumstances, it was found that rotating speeds and loads were positively related to meshing forces. The vibration signals with different load torques and rotating speeds obtained from the gear pair were analyzed. The experiment results showed that the intensity of meshing impact increased with the increases of both rotating speed and load. It was also observed that due to the MRP, the gear meshing frequency was modulated to the resonance frequency band as meshing impacts. Consequently, the resonance frequency band contained most of the energy of the meshing impact. An indicator called resonance energy ratio (RER) was defined to represent the proportion of resonance energy due to meshing impact. The simulation and experiment result show that the proposed RER indicator can well assess the intensity of the vibration. By comparing the RER values of 20 sets of gear vibration data, the influences of rotating speed and load on MRI were discussed. The result show that the proposed method is helpful to the vibration assessment and condition monitoring in different operational states.
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齿轮啮合振动调查和啮合冲击共振频率评估
齿轮传动是应用最广泛的传动形式之一。其振动分析在设计和运行中发挥着重要作用。考虑到齿轮啮合共振现象(MRP),本文分析了转速和载荷对啮合共振强度(MRI)的影响。根据齿轮啮合冲击机理,得出了啮合过程中的啮合力变化。这被认为是施加在齿轮系统上的啮合冲击。通过比较不同情况下的最大啮合力,发现转速和载荷与啮合力呈正相关。分析了齿轮副在不同负载扭矩和转速下的振动信号。实验结果表明,啮合冲击强度随着转速和载荷的增加而增加。同时还观察到,由于 MRP 的作用,齿轮啮合频率在啮合冲击时被调制到共振频率带。因此,共振频率带包含了啮合冲击的大部分能量。我们定义了一个称为共振能量比(RER)的指标,用来表示啮合冲击所产生的共振能量比例。模拟和实验结果表明,所提出的 RER 指标能很好地评估振动强度。通过比较 20 组齿轮振动数据的 RER 值,讨论了转速和负载对 MRI 的影响。结果表明,所提出的方法有助于不同运行状态下的振动评估和状态监测。
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来源期刊
CiteScore
4.00
自引率
10.00%
发文量
72
审稿时长
6-12 weeks
期刊介绍: The purpose of the Journal of Computational and Nonlinear Dynamics is to provide a medium for rapid dissemination of original research results in theoretical as well as applied computational and nonlinear dynamics. The journal serves as a forum for the exchange of new ideas and applications in computational, rigid and flexible multi-body system dynamics and all aspects (analytical, numerical, and experimental) of dynamics associated with nonlinear systems. The broad scope of the journal encompasses all computational and nonlinear problems occurring in aeronautical, biological, electrical, mechanical, physical, and structural systems.
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