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DYNAMIC RESPONSE OF PRESSURE COMPENSATED VARIABLE DISPLACEMENT LINKAGE PUMP

机译:压力补偿变量排量联动泵的动力响应

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The Variable Displacement Linkage Pump (VDLP) uses an adjustable planar linkage to vary the displacement of the piston. Previous work focused on dynamic modeling of the pump at fixed displacements and therefore did not account for the displacement control method or the dynamics of changing displacement. One key application of the VDLP is in pressure compensated, high-pressure water hydraulics. This paper expands on previous modeling work to include the behavior of the hydro-mechanical pressure compensation valves and the displacement control linkage. The multi-domain dynamic model captures the fluid dynamics in the pumping chambers and poppet-style control valves; the dynamics of the control valves; and the kinematics and kinetics of the two degree-of-freedom nine-bar pump linkage. The dynamic model was exercised in a simulation of the pump responding to changing demands in the output flow rate. Simulation results showed that quick response times of 100 milliseconds to a step in the load were achieved. Overshoot of the displacement is damped using an orifice in the control line. A physical prototype of the VDLP was used to validate the simulation results.
机译:可变排量连杆泵(VDLP)使用可调式平面连杆来改变活塞的排量。先前的工作集中于对固定排量的泵进行动态建模,因此没有考虑排量控制方法或排量变化的动力学问题。 VDLP的一项关键应用是压力补偿的高压水液压系统。本文扩展了先前的建模工作,以包括液压机械压力补偿阀和排​​量控制连杆的性能。多域动力学模型可捕获泵室和提升阀式控制阀中的流体动力学。控制阀的动态;以及两个自由度的九杆泵联动机构的运动学和动力学。动态模型在模拟泵中进行,以响应输出流量变化的需求。仿真结果表明,对负载阶跃的响应时间为100毫秒。位移的过冲通过控制管路中的节流孔进行阻尼。 VDLP的物理原型用于验证仿真结果。

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