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軸向柱塞泵孔槽結合配流方式多目標驅動正向設計
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國家自然科學基金資助項目(51075360);“十二五”國家科技支撐計劃資助項目(2011BAF09B03);高等學校博士學科點專項科研基金資助項目(20090101110041)


Multi-objective Drive Forward Design with Damping Orifice and Groove for Axial Piston Pump
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    摘要:

    基于配流盤過渡區(qū)優(yōu)化的傳統(tǒng)軸向柱塞泵降噪方法是在過渡區(qū)配流結構已知的前提下進行反向參數優(yōu)化,缺少普遍性的指導意義。首先對軸向柱塞泵流體噪聲和結構噪聲激振源形成機理進行分析;在此基礎上以消除柱塞腔壓力沖擊和控制柱塞腔流量倒灌峰值及分布位置為設計目標,提出開式軸向柱塞泵孔槽結合配流方式正向設計理論;采用軸向柱塞泵流動特性仿真模型,對此設計理論設計的配流盤的降噪效果進行分析,仿真結果表明可以顯著降低軸向柱塞泵出口流量脈動幅值,基本消除柱塞腔壓力沖擊。由于此設計方法是基于目標驅動的,可以指導不同型號國產軸向柱塞泵配流盤的設計。

    Abstract:

    Traditional noise reduction method for axial piston pump by optimizing the transition area in the valve plate is based on specific structural parameters, which is of less meaning for valve plate design. The formation mechanism of the noise excitation sources of hydraulic noise and structural noise for axial piston pump was discussed. Then, aiming at elimination of the pressure overshoot in piston chamber, and control of the peak value and position of backflow into piston chamber, a forward design theory of distribution method with damping orifice and damping groove for axial piston pump was proposed. Finally, a valve plate was designed based on this design theory. The noise reduction effect of this valve plate was analyzed. Results showed that the application of this design method could reduce the flow ripple amplitude apparently and the pressure overshot could be almost eliminated. Because the structure of the damping groove was not appointed, this design theory can be used in the valve plate design of different domestic axial piston pumps.

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徐兵,張軍輝,楊華勇,葉紹干.軸向柱塞泵孔槽結合配流方式多目標驅動正向設計[J].農業(yè)機械學報,2013,44(7):279-285. Xu Bing, Zhang Junhui, Yang Huayong, Ye Shaogan. Multi-objective Drive Forward Design with Damping Orifice and Groove for Axial Piston Pump[J]. Transactions of the Chinese Society for Agricultural Machinery,2013,44(7):279-285.

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  • 在線發(fā)布日期: 2013-06-20
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