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兵工学报 ›› 2016, Vol. 37 ›› Issue (3): 535-540.doi: 10.3969/j.issn.1000-1093.2016.03.020

• 研究简报 • 上一篇    下一篇

综合传动装置内部激励与箱体振动特征的试验研究

张晓萍1, 王玉林2, 杜明刚1, 杨阳1   

  1. (1.中国北方车辆研究所, 北京 100072; 2.中国兵器科学研究院, 北京 100089)
  • 收稿日期:2015-11-09 修回日期:2015-11-09 上线日期:2016-05-24
  • 作者简介:张晓萍(1989—),女,硕士研究生
  • 基金资助:
    国防科技工业局基础产品创新科研项目(VTDP-3104)

Experimental Study of Internal Excitation and Vibration of an Integrated Transmission Device

ZHANG Xiao-ping1, WANG Yu-lin2, DU Ming-gang1, YANG Yang1   

  1. (1.China North Vehicle Research Institute, Beijing 100072, China;2.Ordnance Science and Research Academy of China, Beijing 100089, China)
  • Received:2015-11-09 Revised:2015-11-09 Online:2016-05-24

摘要: 综合传动装置的振动问题将导致寿命降低,可靠性变差,影响传动的平稳性及品质,其内部激励与箱体振动特征之间的映射关系是目前研究的难点之一。为获取某型综合传动装置内部激励与箱体振动特征之间的映射关系,设计了试验方案,提出了多测点与多工况的综合传动装置箱体台架振动测试与信号耦合分析方法,获取了某型综合传动装置内部激励与箱体振动特征之间的映射关系。结果表明:试验研究分析方法可确定综合传统装置振动激励源的具体位置,以及要控制的振动优势频率,为箱体的结构优化奠定了基础。

关键词: 兵器科学与技术, 内部激励, 振动加速度, 台架试验, 综合传动装置

Abstract: The life and reliability of integrated transmission device may be significantly affected by the vibration, harshness and quality of the device. The relationship between the internal excitation and vibration of the device is one of the important research works. An experimental scheme is presented to obtain the relationship between the internal excitation and vibrations of an integrated transmission device. A coupling signal analysis method is also proposed to investigate the signals from the multiple measurement points and experimental conditions. The relationship between the internal excitation and vibration of the device is obtained based on the proposed experimental method, which can provide some guidance for the structure optimization of the device. The results show that the experimental analysis method can be used to not only determine the vibration source location of the integrated transmission device, but also find the dominant frequency which should be controled, which can provide some guidance for the structure optimization of the device.

Key words: ordnance science and technology, internal excitation, vibration acceleration, bench experiment, integrated transmission device

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