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Modeling and simulation of complex hydraulic valves using EASY5 software

机译:易解5软件复合液压阀的建模与仿真

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Many mechanical systems employing fluid power use one or more valves to control fluid flow. Often these valves can be quite complex, with many inlets and exits, reversing flow, flow and pressure control, and other unique features. It is desirable to model these valves and the associated fluid and control logic circuits with software during the design phase, and explore the effect of design changes on system performance using simulation and other analyses without having to build and modify expensive prototypes. A number of commercially available software packages offer various methods for "graphically modeling" dynamic systems, and some, offer the user predefined libraries of hydraulic components that greatly speed the modeling process. However, the variations on valve design are unlimited, and it is often necessary to model a hydraulic valve that has not been previously defined. This paper describes an approach allowing essentially any valve configuration to be modeled. Simulation results are shown for an example based on a pilot-operated, four-way valve. Significant savings during the design phase of any fluid power project can be accomplished by the rapid virtual prototyping of fluid systems.
机译:许多采用流体电力的机械系统使用一个或多个阀来控制流体流动。这些阀门通常可以非常复杂,有许多入口和出口,逆转流动,流量和压力控制,以及其他独特的功能。期望在设计阶段模拟这些阀和相关的流体和控制逻辑电路,并探讨使用模拟和其他分析的设计变化对系统性能的影响,而无需构建和修改昂贵的原型。许多商业上可获得的软件包为“图形建模”动态系统提供了各种方法,一些方法提供了大大速度建模过程的液压元件的用户预定义库。然而,阀门设计的变化是无限的,并且通常需要模拟尚未定义的液压阀。本文介绍了一种方法,允许建模任何阀门配置。仿真结果显示为基于先导式四通阀的示例示出。在任何流体电力项目的设计阶段期间的大量节省可以通过流体系统的快速虚拟原型来实现。

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