摘要
作为液压泵的通用原理,浮杯技术把泵的优良性能全都结合在一起:效率高、噪声辐射低和压力波动低。因此,开发了定量泵的轴向柱塞泵系列,而且经过改进的浮杯原理也适用于伺服传动液压泵。
出处
《现代制造》
2007年第18期38-39,共2页
Maschinen Markt
同被引文献12
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1ACHTEN P A J, SCHEILEKENS M, MURRENHOFF H, et al. Efficiency and Low Speed Behavior of the Floating Cup Pump[J]. SAE Transactions, 2004,113(2):366-376.
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2Achten P A J, van den Brink T L, Potma J W. Movement of the Cups on the Barrel Plate of a Floating Cup, Axial Piston Machine [J]. International Journal of Fluid Power, 2004,5 (2): 25-33.
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3Achten P A J, Van den Brink T L, Paardenkooper T, et al. Design and Testing of an Axial Piston Pump based on the Floating Cup Principle[J]. Proc. SICFP, 2003,(3):805-820.
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4Achten P A J. Volumetric Losses of a Multi Piston Floating Cup Pump[R]. NCFP, 2005.
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5Achten P A J, BV I, Schellekens M P A. Deformation Effects on the Load Carrying Capacity of the Barrel Bearing in Axial Piston Pumps and Motors[R]. ASME, 2006.
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6Vael G E M, Lopez I, Achten P A J. Reducing Flow Pulsation with the Floating Cup Pump-theoretical Analysis [R]. Bath Workshop on Power Transmission and Motion Control,Profe- ssional Engineering Publishing,2004.
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7Achten P A J, van den Brink T, van den Oever J, et al.Ded- icated Design of the Hydraulic Transformer[J]. Proc. IFK, 2002,(3):233-248.
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8Achten P A J, Innas B V. Changing the Paradigm[R].SICFP' 07,2007.
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9Vael G E M, van den Brink T L, Paardenkooper T,et al. Some Design Aspects of the Floating Cup Hydraulic Transformer[R]. Bath Workshop on Power Transmission and Motion Control, 2003.
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10Platzer, T., Brink,T. van den, Vael, G.E.M., Achten, P.A.J..The Design of A Floating Cup Swash System[R].NCFP,2005.
二级引证文献2
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1杨国来,宫文娜,赵君,白桂香,王淏泽.浮杯泵结构的实用意义及其密封问题[J].液压气动与密封,2017,37(8):69-73. 被引量:1
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2权龙,闫志鑫,章硕峰,杨雨鑫,葛磊,李泽鹏.非道路移动装备高能效电驱液传技术新进展[J].机械工程学报,2023,59(20):385-400. 被引量:1
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1刘西彬.机电伺服传动中降速齿轮的设计[J].机电工程,1992,9(3):27-29.
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2刘冰.浅谈光机电一体化技术的发展方向[J].职业,2010,0(12X):133-134. 被引量:1
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3张莉娟,王建.浅谈光机电一体化技术的应用[J].职业,2009,0(10X):155-155.
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4李瑰贤,吴俊飞,李华敏,祁勇,林少芬,陈秀捷.平行轴内啮合渐开线变厚齿轮的设计与计算[J].中国机械工程,2000,11(8):886-889. 被引量:8
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5Hubert Ermel.分散式技术方兴未艾[J].现代制造,2004(14):64-64.
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6周伟,刘俊,李晓仑,林利红.基于键合图理论的复杂伺服传动系统的建模与仿真[J].中国科技论文,2013,8(8):747-750. 被引量:2
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7张学文,席港港,赵庆志.齿轮齿条传动进给伺服系统减小π因子误差的再研究[J].山东理工大学学报(自然科学版),2015,29(3):73-75. 被引量:1
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8唐仁奎,廖丽.机械CAD三维几何绘图原理与技巧探析[J].科学咨询,2013(22):112-112.
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9罗一新.工业工程(IE)原理研究[J].科技和产业,2006,6(3):21-24. 被引量:3
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10佟岩.螺纹环规的中径测量及其不确定度评定[J].中国测试技术,2007,33(4):85-87.