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Flow analysis of a switching valve with innovative poppet head geometry by means of CFD method

机译:CFD方法采用创新提升阀头几何的开关阀的流量分析

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The article presents an analysis of flow through a differential switching valve installed inside a throttle-check valve block. The valve is mounted in a sandwich type arrangement together with a control valve according to ISO 4401 standard. This type of block arrangement is popular and commonly used in hydraulic drive systems. The development of a typical throttle-check valve using a differential switching valve makes it possible to add a secondary fluid stream and thus increase the inflow rate to an actuator, which is particularly important in fixed-delivery pump systems. Due to the limited range of valve dimensions and the need to adapt flow paths to connection ports, channels of complex geometry are made inside the valve block. Therefore, the main aim of the work was to properly profile geometry of the differential switching valve spool in order to obtain a smooth opening in the entire displacement range. A 3D model of flow paths was built and CFD analysis was carried out. The obtained results of numerical simulations have been confirmed experimentally on a test bench. The CFD analysis allowed values of velocity and pressure profiles as well as axial flow force acting on the spool to be determined. The proposed new shapes of the spool head geometry significantly increase the spool head operating range. Although flow rate in the initial phase of switching valve opening was reduced, the amplitude of fluid flow fluctuations also decreased.
机译:该物品介绍了通过安装在节流阀挡块内的差动切换阀的流量分析。根据ISO 4401标准,阀门与控制阀一起安装在夹层型装置中。这种类型的块布置是流行的且通常用于液压驱动系统。使用差动切换阀的典型节流阀止回阀的开发使得可以添加二次流体流,从而将流入速率增加到致动器,这在固定输送泵系统中尤其重要。由于阀门尺寸有限,并且需要将流动路径适应连接端口,在阀块内部制造复杂几何形状的通道。因此,该工作的主要目的是适当地剖开差动切换阀阀芯的几何形状,以便在整个位移范围内获得光滑的开口。建立了一条流动路径3D模型,并进行了CFD分析。已经在测试台上通过实验证实了数值模拟的所得结果。 CFD分析允许速度和压力分布的值以及作用在卷轴上的轴向流量。所提出的阀芯头几何形状的新形状显着增加了阀芯头部工作范围。尽管切换阀开度的初始相位中的流速降低,但流体流动波动的幅度也降低。

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