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Mechanism of electro-hydraulic exciter for new tamping device

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【作者】 刘毅龚国芳杨华勇韩冬杨学兰

【Author】 LIU Yi;GONG Guo-fang;YANG Hua-yong;HAN Dong;YANG Xue-lan;State Key Laboratory of Fluid Power Transmission and Control (Zhejiang University);

【机构】 State Key Laboratory of Fluid Power Transmission and Control (Zhejiang University)

【摘要】 A new tamping device which is driven by an electrohydraulic exciter was proposed to overcome the limitations of mechanically driven devices.The double-rod oscillation cylinder drives the tamping arm to realize vibration.A new spin valve was designed in order to fulfill dynamic state requirements of the oscillation cylinder.Parametric analysis was carried out by establishing mathematic model.Then,the relationships among the structure of valve port and the frequency,amplitude,output shock force of the cylinder were researched.An experimental device of the electrohydraulic exciter was established to validate the theoretical results.The signals were acquired by AVANT dynamic signal analyser of vibration.The results show that new tamping device can satisfy all kinds of complex working conditions with the flexible adjustment of frequency and amplitude.

【Abstract】 A new tamping device which is driven by an electrohydraulic exciter was proposed to overcome the limitations of mechanically driven devices.The double-rod oscillation cylinder drives the tamping arm to realize vibration.A new spin valve was designed in order to fulfill dynamic state requirements of the oscillation cylinder.Parametric analysis was carried out by establishing mathematic model.Then,the relationships among the structure of valve port and the frequency,amplitude,output shock force of the cylinder were researched.An experimental device of the electrohydraulic exciter was established to validate the theoretical results.The signals were acquired by AVANT dynamic signal analyser of vibration.The results show that new tamping device can satisfy all kinds of complex working conditions with the flexible adjustment of frequency and amplitude.

【基金】 Projects(50975252,51275499)supported by the National Natural Science Foundation of China;Project(2013CB035404)supported by the National Basic Research Program of China;Project(GZKF-201312)supported by Open Foundation of the State Key Laboratory of Fluid Power Transmission and Control,China
  • 【文献出处】 Journal of Central South University ,中南大学学报(英文版) , 编辑部邮箱 ,2014年02期
  • 【分类号】U216.631
  • 【被引频次】13
  • 【下载频次】63
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