Pressure Compensator Design for a Swash Plate Axial Piston Pump

Author:

Mandal N. P.1,Saha R.2,Mookherjee S.3,Sanyal D.4

Affiliation:

1. Assistant Professor Department of Mechanical Engineering, Heritage Institute of Technology, Kolkata 700 107, India e-mail:

2. Assistant Professor Department of Mechanical Engineering, Jadavpur University, Kolkata 700 032, India e-mail:

3. Associate Professor Department of Mechanical Engineering, Jadavpur University, Kolkata 700 032, India e-mail:

4. Professor Department of Mechanical Engineering, Jadavpur University, Kolkata 700 032, India e-mail:

Abstract

An in-line axial-piston swash-plate pump with pressure compensator is widely used for its fast speed of response and power economy. Although several simulation based design approaches exist to minimize issues like fluid-born noises, ample scope exists for more exhaustive design analysis. The most popular pressure compensator for a variable displacement pump with a spool valve actuating the control and bias cylinders has been taken up here. With an existing comprehensive flow dynamics model, an updated model for swiveling dynamics has been coupled. The dynamics also includes the force containment and friction effects on the swash plate. A design optimization has been accomplished for the pressure compensator. The target of the optimal design has been set as minimizing the transient oscillations of the swash plate, the compensator spool, pressures in the bias and control cylinders along with avoidance of both over-pressurization and cavitation in the bias cylinder. It has been found that the orifice diameters in the spring-side and at the metering port of the spool valve and in the backside of the bias cylinder have critical role in arriving at an optimum design. The study has led to a useful design procedure for a pressure compensated variable displacement pump.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference24 articles.

1. Load and Stress Analysis for the Swash Plate of an Axial Piston Pump/Motor;ASME J. Dyn. Syst., Meas., Control,2011

2. Achten, P., van den Brink, T., and Schellekens, M., 2005, “Design of Variable-Displacement Floating Cup Pump,” The Ninth Scandinavian Conference on Fluid Power, SCIFP’05, June 1–3, Linkoping, Sweden.

3. Position Control of High Performance Hydrostatic Actuation System Using a Simple Adaptive Control (SAC) Method;Mechatronics,2011

4. On the Dynamics of Axial Piston Pumps;J. Fluid. Q.,1979

5. Optimization of the Dynamics of Pressure-Compensated Axial Piston Pumps;J. Fluid Control,1983

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