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Erosion behavior and influence of solid particles in hydraulic spool valve without notches

机译:液压阀芯阀腐蚀行为及其影响而无缺口

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摘要

Hydraulic spool valve without notches is used as a kind of important amplification component in hydraulic servo valve. Its static and dynamic properties have a significant impact on the performance of servo valve and hydraulic system. Under solid particles erosion in oil, the metering edges of spool valve were usually eroded and worn. This process was irreversible and induced serious control performance degradation of orifice and valve. In this paper, the erosive behavior and influence of solid particles in hydraulic spool valve without notches were investigated. By the surface microtopography measurement of the spool, erosion corners failure were present. The CFD simulation of solid-liquid two-phase flow was carried out by discrete phase model (DPM) to analyze the erosion failure. The migration route of the severe erosion region of hydraulic spool valve without notches was obtained and the mechanism of local erosion was revealed. An interesting phenomenon of erosion inflection point and face-back flow was found. The exact calculation method of the orifice area under erosion was discussed and put forward. This paper provides a reference for further study on the erosion damage and erosion resistance of hydraulic spool valve without notches.
机译:没有缺口的液压阀芯阀被用作液压伺服阀中的一种重要的放大组分。其静态和动态性能对伺服阀和液压系统的性能产生了重大影响。在固体颗粒在油中的侵蚀下,阀芯阀的计量边缘通常被侵蚀和磨损。该过程是不可逆转的,并且诱导孔口和阀的严重控制性能下降。本文研究了没有缺口的液压阀阀中固体颗粒的腐蚀行为和影响。通过卷轴的表面微波术测量,存在侵蚀角落。通过离散相模型(DPM)进行固液两相流的CFD模拟,以分析侵蚀失败。获得了液压阀阀的严重侵蚀区域的迁移路径,没有缺口,揭示了局部腐蚀的机制。发现了侵蚀拐点和背面流动的有趣现象。讨论并提出了侵蚀下的孔口区域的确切计算方法。本文提供了进一步研究液压阀芯液压阀阀而没有缺口的进一步研究的参考。

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