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Flow Field Simulation and Experimental Research on the Triangle Groove Cone Throttle Valve

机译:三角形沟槽节流阀的流场仿真与实验研究

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摘要

Aiming at the problems of cavitation noise in the cone throttle valve, triangle groove cone throttle valves with 45, 53, 60 degree were selected as the research objects. Firstly the structure characteristics of the throttle valves were analyzed, then the three-dimensional models and mathematical models were established. By using the finite element simulation software ADINA, the simulation diagrams about pressure and flow velocity of the cone valves were obtained and then verified on the test bench which was about the noise characteristics of throttle valve. The investigation result showed that the flow field of the cone valve was complex, and there were local low pressure areas where were high incidence of cavitation; the valve with 60 degree spool had the minimum noise, which showed the best performance, then the 53 degree spool was a bit poor, and the worst valve was 45 degree spool. Increasing the angles of the triangle groove appropriately could reduce the cavitation noise and improve the performance of the valve. This investigation has great significance on understanding the flow field and controlling the cavitation noise in triangle groove cone throttle valves. Besides it also has a certain reference value to other hydraulic components on the cavitation noise control and structural optimization.
机译:旨在瞄准锥形节流阀中的空化噪声,选择具有45,53,60度的三角形槽锥节节流阀作为研究对象。首先,分析了节流阀的结构特性,然后建立了三维模型和数学模型。通过使用有限元仿真软件ADINA,获得了关于锥形阀的压力和流速的仿真图,然后验证了关于节流阀的噪声特性的测试台上。调查结果表明,锥形阀的流场复杂,存在局部低压区域,气相高发生耐高量;具有60度的阀芯的阀门具有最小噪音,显示出最佳性能,然后53度阀芯有点差,最坏的阀门为45度阀芯。增加三角形槽的角度适当地可以降低空化噪声并提高阀的性能。该研究对理解流场具有重要意义,并控制三角形槽锥节流阀中的空化噪声。此外,它还对空化噪声控制和结构优化的其他液压元件也具有一定的参考值。

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