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Design and Analysis of a Swashplate Control System for an Asymmetric Axial Piston Pump

机译:非对称轴向活塞泵斜盘控制系统的设计与分析

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Based on the previously developed fixed-displacement asymmetric axial piston pump, a variable displacement asymmetric axial piston pump (VDAAPP) with three independent suction/delivery ports is proposed. A basic linear model of VDAAPP is established to get open-loop bode diagram. Based on open-loop Bode diagram features and design requirements, P-controller is determined for VDAAPP. Then VDAAPP's performance is investigated by advanced modeling environment for performing simulations of engineering systems (AMESim) and automatic dynamic analysis of mechanical systems (ADAMS) joint simulation, and some key design parameters are obtained. Next, a VDAAPP prototype with a maximum displacement of 40 cc/rev is designed and manufactured, ratio of flow rates at ports A, B and T is 1:0.6:0.4. Due to hard limitations of the test bench, the performance only under the conditions of the opposite passive loads is tested. Preliminary test results indicate that VDAAPP prototype works normally and meets the design requirements for flow ratio, and the maximum rise time of the test pressure is about 0.32 s. However, due to special design of VDAAPP valve plate, the swash plate torque severely limits system dynamic response. Therefore, an improved swashplate control system based on asymmetric-valve-controlled asymmetric-piston scheme is presented as well, it is found to be an effective way to suppress the negative impact of swash plate torque on system dynamic performance. This provides a direction for the optimization of the swashplate control system for asymmetric axial piston pumps in the future.Y
机译:基于先前开发的固定位移不对称轴向活塞泵,提出了一种可变排量的不对称轴向活塞泵(VDAApp),具有三个独立抽吸/输送端口。建立了VDAAPP的基本线性模型,以获得开环BODE图。基于开环BODE图的特性和设计要求,针对VDAAPP确定了P-Controller。然后,通过先进的建模环境来调查VDAAPP的性能,用于执行工程系统的模拟(AMESIM)和机械系统(ADAMS)联合仿真的自动动态分析,并获得了一些关键设计参数。接下来,设计和制造具有最大40cc / Rev的最大位移的VDAAPP原型,端口A,B和T的流速比为1:0.6:0.4。由于测试台的硬局部,测试仅在相反无源载荷的条件下进行性能。初步测试结果表明,VDAAPP原型正常运行并满足流量比的设计要求,测试压力的最大上升时间约为0.32秒。但是,由于VDAAPP阀板的特殊设计,旋转斜盘扭矩严重限制了系统动态响应。因此,还提供了一种基于非对称阀控制的不对称 - 活塞方案的改进的斜盘控制系统,发现是抑制旋转斜盘扭矩对系统动态性能的负面影响的有效方法。这提供了未来的不对称轴向活塞泵的斜盘控制系统的优化方向.Y

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