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Research on the performance of electro-hydraulic proportional flow valve controlled by pilot pump

机译:试验泵控制电液比例流量阀的性能研究

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Cartridge flow valves, widely applied in heavy machine and equipment, have the advantages of low leakage, large flow capacity, and simple structure. However, in the existence technologies, in order to reduce the influence of load variety on valve flow, a pressure differential compensator or a cartridge type flow sensor should be added to proportional throttle valve. This method reduces valve flow capacity and increases system throttling loss. In large flow occasion, flow only can be indirectly controlled by changing valve opening area for the limitation of the structure. So a low energy consumption, high controllable electro-hydraulic proportional valve which is structured by a hydraulic transistor (Valvistor) and a small displacement hydraulic pump driven by a servo motor is introduced. Based on the Valvistor valve flow amplification principle, main valve flow is controlled by pilot pump flow which is controlled by changing rotation speed without the influence of load variety. In the research, it's known from the analysis of the new principle valve steady flow characteristics that feedback throttle slot pre-opening will cause the decrease of the main valve flow as pressure drop increases. Soa method of pressure differential-pilot pump rotation speed compensation is put forward and it can obtain ideal flow characteristic. Then the dynamic mathematical model is established and the main valve stability criterion is derived. The influence of the valve parameters on main valve performance is analyzed and simulated. The results provide a new method for the large flow electro-hydraulic proportional control system.
机译:墨盒流动阀,广泛应用于重型机械和设备,具有泄漏漏电,流量大的优点,结构简单。然而,在存在技术中,为了减少负载变化对阀流量的影响,应将压差补偿器或盒式流量传感器添加到比例节流阀中。该方法可降低阀门流量并提高系统节流损耗。在大流动场合中,只能通过改变阀门开口区域以限制结构的限制来间接控制流动。因此,引入了由液压晶体管(阀门)构成的低能量消耗,高可控电动液压比例阀和由伺服电动机驱动的小位移液压泵。基于Valvistor阀流量放大原理,主阀门流量由先导泵流量控制,该泵流量通过改变旋转速度而无需负载变化的影响来控制。在该研究中,从分析了新的原理阀稳定流动特性,反馈节流槽预开口将导致主阀门流量减小随着压降增加。提出了压差泵转速补偿的SOA方法,可以获得理想的流动特性。然后建立动态数学模型,导出主阀稳定性标准。分析和模拟阀参数对主阀性能的影响。结果为大流动电液比例控制系统提供了一种新方法。

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