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Establishment of Valve Control Mathematical Model of Hydraulic Differential Cylinder

机译:液压差动圆柱阀控制数学模型的建立

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From a practical point of hydraulic servo system, this paper researches on four-way servo valve working as three-way servo valve combined three-way pressure reducing valve forming differential form controlling asymmetric hydraulic cylinder characteristics using the classical control theory. According to the characteristics of hydraulic cylinder extends and retracts, it redefines the load pressure and load flow, establishes the load flow equation of control valve, the continuity equation of hydraulic cylinder and dynamic balance equations of the hydraulic cylinder which connected with the load, reaches the valve controlled asymmetrical cylinder system transfer function. Considering engineering practice, simplifying load types, it respectively obtains the transfer function of elastic load and none elastic load under the system which provides theoretical basis for analysing the static and dynamic characteristics of the valve controlled asymmetrical cylinder system.
机译:从液压伺服系统的实践点,本文研究了四向伺服阀作为三通伺服阀合并三通减压阀形成差动形式,控制不对称的液压缸特性使用古典控制理论。根据液压缸的特点延伸和收缩,它重新定义了负载压力和负载流,建立了控制阀的负载流量方程,液压缸的连续性方程与负载连接的液压缸的动态平衡方程式,到达阀门控制的不对称气缸系统传递功能。考虑到工程实践,简化负载类型,它分别获得弹性负载的传递函数和系统下的无弹性负载,为分析阀控制不对称气缸系统的静态和动态特性提供了理论依据。

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