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Numerical and experimental investigation on opening direction steady axial flow force compensation of converged flow cartridge proportional valve

机译:打开方向的数值和实验研究稳态轴向流量补偿比例阀

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摘要

This paper proposes a method to optimize a structure that can compensate the steady axial flow force acting on the spool in a converged flow cartridge proportional valve. The negative flow force working on the origin conical poppet, which can be as large as 13% of the control force, acts as a big disturbance to the conical spool position adjustment, resulting in poor lowering speed control performance of the proportional valve or even instability of the conical spool. Firstly, by introducing a damping tail structure to the conical poppet, the direction and the value of the flow forces can be regulated, and through changing parameters of damping tail, the optimal structure can be obtained. Computational fluid dynamics (CFD) calculations were conducted to analyze how the damping tail parameters affect the flow forces and obtain the best parameter combinations. A test rig was set up to verify the effect of above methods. Good agreement of the CFD calculations and experiment results indicates that the proposed methods can provide guidance for the flow force regulation of other valve poppets.
机译:本文提出了一种优化结构的方法,该结构可以在融合的流量盒比例阀中补偿作用在卷轴上的稳态轴向流量的结构。在原始锥形提升阀上工作的负流量力可以像控制力的13%一样,充当对锥形阀芯位置调节的大扰动,导致比例阀的降低速度控制性能差或甚至不稳定锥形线轴。首先,通过将阻尼尾部结构引入锥形提升阀,可以调节流动力的方向和值,并且通过改变阻尼尾的参数,可以获得最佳结构。进行计算流体动力学(CFD)计算以分析阻尼尾参数如何影响流量并获得最佳参数组合。设置测试钻机以验证上述方法的效果。 CFD计算和实验结果的良好一致表明,所提出的方法可以为其他阀门普通的流量调节提供指导。

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