Poppet valve performance under cavitating conditions

O. Chiavola, E. Frattini, F. Palmieri, G. Possenti
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引用次数: 2

Abstract

In fluid power applications, poppet valves are used to regulate flow rate or pressure by determining the flow areas for the hydraulic fluid, according to the proper control logics. The operating conditions may cause the onset of cavitation, with the possible alteration of the valve performance. This work aims at experimentally characterizing the behavior of a research-oriented conical poppet valve, exploring the effect of the feeding conditions on the flow characteristics of the valve. As a preliminary step, the research-oriented poppet valve has been designed according to the layouts found in the literature. Since the main interest is here focused on the small hydraulic power-packs, the valve size has been scaled down to meet their typical flow-rate range. Beside the research-valve design phase, a complete hydraulic test bed has been set up. Once the whole experimental facility has been completed, the assessment of the system has been made under stationary conditions. In this way, the pressure-flow characteristic curves of the valve were obtained for two configurations of poppet lifts. Subsequently, further tests were carried out in order to evaluate the test-bed capability to investigate the behavior of poppet valve under fluctuating pressure condition. This inlet condition is typical of small power-packs, where delivery volumes are small and the pump-induced pressure fluctuations are not negligible. Materials and adopted methods are described and discussed; discharge coefficients, cavitation inception and flow-rate-pressure characteristics are reported, highlighting the capability of the proposed approach.In fluid power applications, poppet valves are used to regulate flow rate or pressure by determining the flow areas for the hydraulic fluid, according to the proper control logics. The operating conditions may cause the onset of cavitation, with the possible alteration of the valve performance. This work aims at experimentally characterizing the behavior of a research-oriented conical poppet valve, exploring the effect of the feeding conditions on the flow characteristics of the valve. As a preliminary step, the research-oriented poppet valve has been designed according to the layouts found in the literature. Since the main interest is here focused on the small hydraulic power-packs, the valve size has been scaled down to meet their typical flow-rate range. Beside the research-valve design phase, a complete hydraulic test bed has been set up. Once the whole experimental facility has been completed, the assessment of the system has been made under stationary conditions. In this way, the pressure-flow chara...
空化条件下的锥阀性能
在流体动力应用中,锥阀根据适当的控制逻辑,通过确定液压流体的流动区域来调节流量或压力。操作条件可能导致气蚀的发生,并可能改变阀门的性能。本工作旨在实验表征研究型锥形锥阀的行为,探讨进料条件对阀流量特性的影响。作为第一步,根据文献中找到的布局对研究型锥阀进行了设计。由于主要关注的是小型液压动力组件,因此阀门尺寸已经缩小,以满足其典型的流量范围。在阀门研究设计阶段之外,还搭建了一个完整的液压试验台。一旦整个实验设施完成,就在固定条件下对系统进行评估。通过这种方法,得到了两种升降阀配置的压力-流量特性曲线。随后,进行了进一步的试验,以评估试验台的能力,以研究波动压力条件下锥阀的性能。这种进口条件是典型的小型动力包,其中输送量很小,泵引起的压力波动不可忽略。对材料和采用的方法进行了描述和讨论;报告了流量系数、空化起始和流量-压力特性,突出了该方法的能力。在流体动力应用中,锥阀根据适当的控制逻辑,通过确定液压流体的流动区域来调节流量或压力。操作条件可能导致气蚀的发生,并可能改变阀门的性能。本工作旨在实验表征研究型锥形锥阀的行为,探讨进料条件对阀流量特性的影响。作为第一步,根据文献中找到的布局对研究型锥阀进行了设计。由于主要关注的是小型液压动力组件,因此阀门尺寸已经缩小,以满足其典型的流量范围。在阀门研究设计阶段之外,还搭建了一个完整的液压试验台。一旦整个实验设施完成,就在固定条件下对系统进行评估。这样,压力-流量特性…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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