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Flow characteristics of a hydraulic cone-throttle valve during cavitation

机译:空化期间液压锥节油门阀的流动特性

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Purpose This paper aims to resolve the cavitation problem encountered in cone throttle valves concerning fluid flow performance and pitting from cavitation luminescence, the author studied the flow field within a cone throttle valve set with various valve openings, inlet pressures and outlet back pressures. Design/methodology/approach The flow and cavitation distribution in the valve under different pressure conditions were obtained in simulations. To confirm these results experimentally, a hydraulic cavitation platform was constructed. The valve was made of polymethyl methacrylate material with high transparency to observe the cavitation directly, as well as cavitation luminescence. The flow characteristics of this valve were measured under various working conditions. Findings With increasing cavitation strength, a reduction in cavitation on the throttle capacity was more evident. Increasing the back pressure and reducing the working pressure of the valve appropriately improves the flow capacity of the valve, which subsequently improves the performance of the valve. The cavitation luminescence is also linearly related to cavitation intensity. That is, the stronger the flow capacity of the valve, the less likely the luminescence is produced. Moreover, a stronger luminescence intensity worsens the flow performance of the valve. Research limitations/implications - Owing to the limitation of experimental means and lack of research on bubble shape, the subsequent research will complement this aspect. Practical implications - With a view to providing theoretical and experimental support, cavitation luminescence is also studied to gain a deeper understanding of the cavitation mechanism in hydraulic valves. Originality/value The innovation of this paper is to study the cavitation luminescence in the hydraulic system.
机译:目的,本文旨在解决锥形节流阀遇到的有关流体流动性能和空化发光点蚀的空化问题,作者研究了具有各种阀门开口,入口压力和出口后压的锥形节流阀内的流场。设计/方法/接近阀门在不同压力条件下的流动和空化分布在模拟中获得。为了通过实验确认这些结果,构建了一个液压空化平台。阀门由具有高透明度的聚甲基丙烯酸甲酯材料制成,可直接观察空化,以及空化发光。在各种工作条件下测量该阀的流动特性。随着空化强度的增加,节气门容量的降低更加明显。增加背压并减小阀的工作压力适当地提高了阀的流量,随后提高了阀的性能。空化发光也与空化强度线性相关。也就是说,阀门的流量越强,产生的发光不太可能。此外,更强的发光强度会使阀门的流动性能恶化。研究限制/影响 - 由于实验手段的限制和缺乏对泡沫形状的研究,随后的研究将补充这一方面。实际意义 - 为了提供理论和实验支持,还研究了空化发光,以深入了解液压阀中的空化机构。原创性/价值本文的创新是研究液压系统中的空化发光。

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