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Energetic and dynamic impact of counterbalance valves in fluid power machines

机译:流体动力机械中的平衡阀的动力和动态影响

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Counterbalance valves negatively affect the dynamical behavior of most of the hydraulic systems in which they are utilized, and they introduce additional energy consumption. Various valve architectures have been developed to address the dynamical issues related to the use of these components, and empirical guidelines are also available to determine the best value of their set parameters such as the pilot ratio and the setting pressure. However, the problem of characterizing the portion of energy consumption introduced by counterbalance valves in a hydraulic circuit, and how this consumption is related to the valve setting, has never been addressed according to a systematic approach. This paper addresses this problem and proposes a general approach to study the energy consumption introduced by the counterbalance valves for given operating cycles of the machine in which they are used. In particular, a graphical method is utilized to study the effects of counterbalance valves in the whole hydraulic system. This method is also used to interpret the potentials for energy recovery associated with different settings of the counterbalance valves. The basic considerations which can be obtained using a graphical method are then supported by results provided by a more detailed numerical model of a particular reference machine, a hydraulic crane. The numerical model is validated on the basis of experimental results and permits to derive not only considerations about the energy consumption of counterbalance valves, but also their effect in terms of dynamic behavior of the system.
机译:平衡阀会对使用它们的大多数液压系统的动力性能产生负面影响,并且会增加能耗。已经开发出各种阀结构来解决与使用这些部件有关的动力学问题,并且经验指南也可用于确定其设定参数(例如先导比和设定压力)的最佳值。然而,根据系统的方法从未解决过表征由液压回路中的平衡阀引入的能量消耗部分以及该消耗与阀设置如何相关的问题。本文解决了这个问题,并提出了一种通用方法来研究在使用给定平衡阀的机器的给定运行周期中由平衡阀引入的能耗。特别是,采用图形方法来研究平衡阀在整个液压系统中的作用。此方法还用于解释与平衡阀的不同设置相关的能量回收潜力。然后,可以通过图形方法获得的基本考虑因素得到特定参考机器(液压起重机)更详细的数值模型提供的结果的支持。该数值模型基于实验结果进行了验证,不仅可以得出关于平衡阀能耗的考虑,还可以得出它们对系统动态行为的影响。

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