首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Novel Piston Pressure Carryover for Dynamic Analysis and Designs of the Axial Piston Pump
【24h】

Novel Piston Pressure Carryover for Dynamic Analysis and Designs of the Axial Piston Pump

机译:用于轴向柱塞泵动态分析和设计的新型活塞压力传送

获取原文
获取原文并翻译 | 示例
           

摘要

The timing definition of valve plates is one of the most complex topics in the piston pump designs because it affects many pump characteristics (such as efficiency, swashplate stroking, stabilities, noise, etc.). In the study, the pressure carryover is introduced and defined as the average angular positions to locate piston pressure transitions from the top dead center (TDC) or bottom dead center (BDC) in the piston pump. Pressure carryover presents the overall outcome of the pressure transitions within piston bores. The new pressure carryover definition is derived by the timing angles and other geometrics of valve plates that is an approximation of the practical pressure transitions. The pressure carryover also determines the containment forces and moments on the swashplate produced by the pumping pistons. The relationship between the pressure carryover angle and the containment moment has been developed and analyzed in the study. The amplitudes and frequencies of the forces and moments can be changed by varying the pressure carryover angle that produce different tonalities and control efforts for the swashplate type axial-piston pumps. Therefore, the pressure carryover is the most important and straightforward connection between pump dynamics and valve plate designs. In order to optimize the pump performance, the piston pressure carryover might be investigated thoroughly for the pump and its controller designs.
机译:阀板的正时定义是活塞泵设计中最复杂的主题之一,因为它会影响许多泵特性(例如效率,斜盘行程,稳定性,噪声等)。在研究中,引入了压力滞留并将其定义为平均角位置,以定位活塞压力从活塞泵的上止点(TDC)或下止点(BDC)的位置。压力残留代表了活塞孔内压力过渡的整体结果。新的压力滞留定义是通过阀板的正时角和其他几何形状得出的,这些角度近似于实际压力转换。压力传递还决定了由泵送活塞产生的斜盘上的密封力和力矩。在研究中已经开发并分析了压力滞留角与约束力矩之间的关系。力和力矩的振幅和频率可以通过改变压力滞留角来改变,该压力滞留角会产生不同的音调并控制斜盘式轴向柱塞泵的工作量。因此,压力滞留是泵动力学和阀板设计之间最重要和最直接的联系。为了优化泵性能,可能需要对泵及其控制器设计的活塞压力滞留进行彻底研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号