首页> 外文会议>IEEE International Conference on Mechatronics and Automation >Application of SimulationX?-based. Technique to the reduction of pressure pulsation according to tilting angles of a swash plate and notch shapes of a valve plate for swash plate type piston motor
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Application of SimulationX?-based. Technique to the reduction of pressure pulsation according to tilting angles of a swash plate and notch shapes of a valve plate for swash plate type piston motor

机译:模拟x的应用。根据旋转挡板和阀板的斜盘形状的斜盘型活塞电动机的叶片形状减小的技术

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Machinery industry has constantly driven research on automation systems that use mechanical energy to increase the efficiency, productivity and convenience of production systems. In particularly the hydraulic systems using hydraulic fluid have higher power outputs than those of other systems, which is why they have long been used in construction and machinery industry. Among hydraulic equipment, the swash-plate type piston motor is the most important and indispensable component in construction and machinery industry, converting fluid energy into mechanical energy. To design a less noisy and more stable swash-plate type piston motor, the tilting angles of swash plates and the notch shapes of valve plates need be investigated. This paper first will investigate a kinematic analysis of a swash-plate type piston motor model, using the hydraulic analysis program SimulationX? to 9 piston motor model and to simulate the tilting angle of swash-plate for the low-pressure pulsation and torque pulsation of the swash-plate type motor. Finally, we conducts modeling the notch shapes of the valve plate and analyse the effects of design parameters on torque stabilization and pressure pulsation as well as those of a non-notch, V-type notch and U-type notch on pulsation reduction and torque stabilization. The simulation result on pulsation reduction and torque stabilization will serve as reference data for determining some optimal figures in designing swash-plate type piston motors.
机译:机械行业在使用机械能源来提高生产系统的效率,生产力和便利性的自动化系统上不断推动研究。特别是使用液压流体的液压系统具有比其他系统更高的功率输出,这就是为什么它们长期以来在建筑和机械行业中使用。在液压设备中,斜盘式活塞电机是建筑和机械工业中最重要,最不可或缺的部件,将流体能量转化为机械能。为了设计较少的嘈杂和更稳定的斜轮板型活塞电动机,需要研究旋转斜盘的倾斜角和阀板的凹口形状。本文首先将研究旋转斜盘式活塞电机模型的运动学分析,使用液压分析程序模拟x?到9个活塞电动机模型,并模拟斜纹板的斜纹板倾斜角度,斜纹板型电动机的低压脉动和扭矩脉动。最后,我们进行阀板的凹口形状的建模,并分析设计参数对扭矩稳定和压力脉动的影响以及非缺口,V型凹口和U型凹口上的脉动减少和扭矩稳定化的影响。对脉动减小和扭矩稳定化的仿真结果将作为参考数据,用于确定设计斜轮式活塞电动机的一些最佳图。

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