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Effects of multiple factors on the stress of the electro-hydraulic directional valve used on the hydraulic roof supports

机译:多种因素对液压顶棚支架上电动液压换向阀应力的影响

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The large flow electro-hydraulic directional valves are the key operating components for automation of the hydraulic roof supports in the coal mine. Cracking is a common failure mode of the valve. Effects of the buffer damp diameter, the valve type and the static pressure on the stress of the valve were researched. The valve dynamic behavior was investigated by AMESim. The transient collision stresses of the inlet valve sleeve of the main control valve under different buffer damp diameters and different valve types were investigated by ANSYS/LS-DYNA. The static stress analysis was conducted in ANSYS too. Results show that the valve failure is due to the fatigue of the inlet valve sleeve when suffered from the collision stress wave in the valve opening process, rather than the lack of component strength. The buffer damp diameter, the key parameter of the valve, has a significant effect on the collision stress of the inlet valve sleeve. The integrated type valve has a better stress state compared to the separated type valve. This paper provides an effective method to solve the fracture problems of hydraulic directional valves. It is also significant for the design and optimization of hydraulic components.
机译:大流量电动液压换向阀是煤矿液压顶板支架自动化的关键操作组件。破裂是阀门的常见故障模式。研究了缓冲阻尼直径,阀类型和静压力对阀应力的影响。阀的动态行为由AMESim进行了研究。利用ANSYS / LS-DYNA研究了在不同缓冲阻尼直径和不同阀类型下,主控制阀进气阀套的瞬态碰撞应力。静应力分析也在ANSYS中进行。结果表明,阀的失效是由于阀打开过程中受到冲击应力波的影响而导致的,这是由于进口阀套的疲劳所致,而不是缺乏部件强度。缓冲阻尼直径是阀门的关键参数,对进气阀套的碰撞应力有很大影响。与分离型阀相比,集成型阀具有更好的应力状态。本文为解决液压换向阀的断裂问题提供了有效的方法。这对于液压元件的设计和优化也很重要。

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