Transient Simulation on Unbalanced Torque of Piston Type Valve Cores During Dynamic Motion

Cong-wei Hou, Mu Juan, Wen-qing Li, Zhi-jiang Jin, J. Qian
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引用次数: 1

Abstract

Piston type valve cores are widely adopted in check valves, globe valves, pressure reducing valves and so forth. With the irregular inlet flow channel, the bottom of piston type valve core exits unbalanced torques usually. The unbalanced torque causes the valve core to squeeze sealing elements and increases the energy consumption. To analyze the unbalanced torque on the bottom of the piston type valve core, a transient numerical model of the piston type valve core is established and the simulation results are compared with the theoretical formula for the purpose of validation. The dynamic flow characteristics are studied to investigate pressure characteristics on the bottom of the piston type valve core with the dynamic motion of the valve core. Meanwhile, pressure characteristics under different valve core displacements are obtained, and the sensitive range of the unbalanced torque is found. This work can be helpful for the further structural optimization on the valves with piston type valve cores.
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活塞式阀芯动态运动时不平衡力矩的瞬态仿真
活塞式阀芯广泛应用于止回阀、截止阀、减压阀等。由于进口流道不规则,活塞式阀芯底部往往存在不平衡力矩。扭矩不平衡导致阀芯挤压密封元件,增加了能耗。为了分析活塞式阀芯底部的不平衡力矩,建立了活塞式阀芯的瞬态数值模型,并将仿真结果与理论公式进行了对比验证。研究了活塞式阀芯的动态流动特性,研究了阀芯动态运动时阀芯底部的压力特性。同时,得到了不同阀芯位移下的压力特性,找到了不平衡力矩的敏感范围。为活塞式阀芯阀的进一步结构优化提供了理论依据。
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