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CFD analysis of pressure loss during flow by hydraulic directional control valve constructed from logic valves

机译:由逻辑阀构造的液压方向控制阀对流动过程中的压力损失进行CFD分析

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The aim of this paper is to investigate the reduction of flow resistance in a hydraulic system. The undertaken matter is focused on a spool type directional control valve with pilot operated check valves. In the paper there is a proposition of replacing a 4-way directional control valve with pilot operated check valves by suitable unit consisting of logic valves. Therefore, a body of new directional control valve has been designed. Four logic valves are mounted on the body and closed with a cover on which electromagnetic pilot valve is assembled. The hydraulic ports of the body are in accordance with the standard ISO 4401 - 08-07-0-94, so the proposed new directional control valve can be applied alternatively to a directional spool valve. An important task given during the work is to create the systems of flow paths inside the body, which are assumed to be performed with simple technologies like: drilling, boring and milling. The system of the designed flow paths is verified by CFD analysis with the use of ANSYS/FLUENT program on three-dimensional model. Obtained results are compared with the results of the characteristics given in catalogues and coming from experimental research of the prototype. The difference in pressure loss during flow for the logic valve taken from CFD calculation and the catalogue do not exceed 5%. Presented in the paper directional control valve may operate for volumetric flow rate up to 450 dm~3/min and the pressure up to 42 MPa. In the proposed solution, although simple technologies of making flow paths were applied, the pressure losses were reduced over 35%. The developed solution is close to a standard directional spool valve and can be assembled on an identical sub-plate.
机译:本文的目的是研究液压系统中流阻的减小。所研究的内容集中在带有先导式止回阀的滑阀式方向控制阀上。在本文中,提出了通过适当的由逻辑阀组成的单元将先导式单向阀替换为四通方向控制阀的提议。因此,已经设计了一种新型的方向控制阀。四个逻辑阀安装在阀体上,并用一个盖关闭,该盖上装有电磁先导阀。阀体的液压端口符合ISO 4401-08-07-0-94标准,因此建议的新型方向控制阀可以替代地应用于方向滑阀。在工作期间给予的一项重要任务是创建体内的流路系统,假定这些流路系统是通过简单的技术来执行的,例如:钻孔,镗孔和铣削。在三维模型上使用ANSYS / FLUENT程序通过CFD分析验证了设计的流路系统。将获得的结果与样本中给出的特性结果进行比较,这些结果来自原型的实验研究。从CFD计算和目录中得出的逻辑阀在流动过程中的压力损失差异不超过5%。纸张方向控制阀中的阀门可在最高450 dm〜3 / min的体积流量和最高42 MPa的压力下运行。在提出的解决方案中,尽管使用了简单的制造流路的技术,但压力损失降低了35%以上。开发的解决方案接近于标准方向滑阀,并且可以安装在相同的底板上。

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