首页> 外文会议>ASME/BATH symposium on fluid power and motion control >ON THE INFLUENCE OF PISTON AND CYLINDER DENSITY IN TRIBODYNAMICS OF A RADIAL PISTON DIGITAL FLUID POWER DISPLACEMENT MOTOR
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ON THE INFLUENCE OF PISTON AND CYLINDER DENSITY IN TRIBODYNAMICS OF A RADIAL PISTON DIGITAL FLUID POWER DISPLACEMENT MOTOR

机译:活塞和缸体密度对径向活塞数字式流体动力马达的动力学特性的影响

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In the past three decades an increasing amount of research has been performed in the field of tribodynamics of fluid power pumps and motors. The main incentives for this research are optimization of reliability and efficiency through the study of loss and wear mechanisms. These mechanisms are very difficult to study experimentally, whereby modeling and simulation are necessary. The modeling of tribodynamics is a multiphysics problem involving multibody dynamics, fluid mechanics, thermodynamics and solid mechanics. Consequently, the simulation durations can easily become impractical for parametric analysis or optimization. The coupling between multibody dynamics and fluid mechanics depend on the formulation of the solid body motion equations, where two approaches have historically been used. One approach is where the external forces on any lubricated joint are balanced by the fluid forces, such that solid body inertia is neglected. The other approach includes the inertia terms in the calculation of microdynamics. The inclusion of inertia terms entails a need for smaller time steps in comparison to the force balance approach, wherefore it is of interest to analyze the influence of the inertia term. In this paper the influence of the inertia term on the lubrication gaps of a radial piston motor are studied by a parametric analysis of the piston and cylinder density in a multibody tribodynamic simulation model. The motor is modeled as a digital fluid power displacement machine and a series of full-stroke displacement simulations are used as basis for the parametric analysis. From the parametric analysis a change, in the minimum film thickness as function of piston and cylinder density, is shown for certain operating modes of the digital fluid power displacement motor. This indicate a need for careful assessment of the applicability, of the force balance condition, if it is used in multibody tribodynamic simulations of radial piston digital fluid power displacement motors.
机译:在过去的三十年中,在流体动力泵和马达的摩擦动力学领域进行了越来越多的研究。这项研究的主要动机是通过损耗和磨损机制的研究来优化可靠性和效率。这些机制很难通过实验研究,因此必须进行建模和仿真。摩擦动力学建模是一个涉及多体动力学,流体力学,热力学和固体力学的多物理场问题。因此,对于参数分析或优化,仿真持续时间很容易变得不切实际。多体动力学和流体力学之间的耦合取决于固体运动方程的公式化,其中在历史上曾使用两种方法。一种方法是在任何润滑接头上的外力通过流体力平衡,从而忽略了固体惯性。另一种方法是在微动力学计算中包括惯性项。与力平衡方法相比,包含惯性项需要更短的时间步长,因此分析惯性项的影响很有意义。在多体摩擦动力学仿真模型中,通过对活塞和缸体密度的参数分析,研究了惯性项对径向活塞电机润滑间隙的影响。电动机被建模为数字流体动力位移机,并且一系列全冲程位移仿真被用作参数分析的基础。从参数分析可以看出,对于数字式流体动力马达的某些运行模式,最小薄膜厚度随活塞和气缸密度的变化而变化。这表明如果将其用于径向活塞数字流体动力马达的多体摩擦动力学仿真,则需要仔细评估力平衡条件的适用性。

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