Load and stress analysis for the swash plate of an axial piston pump/motor
In an axial piston pump design, the swash plate plays an important role in controlling the displacement of the pump, especially in a closed loop system. In this paper, the axial piston pump is incorporated into the design of a hydraulic regenerative braking system for hybrid vehicles. The pump in th...
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my.um.eprints.69232021-10-01T03:53:47Z http://eprints.um.edu.my/6923/ Load and stress analysis for the swash plate of an axial piston pump/motor Norhirni, M.Z. Abd Shukor, Mohd Hamdi Nurmaya Musa, S. Saw, L.H. Mardi, N.A. Hilman, N. TS Manufactures In an axial piston pump design, the swash plate plays an important role in controlling the displacement of the pump, especially in a closed loop system. In this paper, the axial piston pump is incorporated into the design of a hydraulic regenerative braking system for hybrid vehicles. The pump in this configuration should function in dual mode, as a pump and as a motor. For this to occur, the swash plate should swing in two opposite directions. The swash plate presented in this paper is designed for stability and ease of control. Analytical analysis of torque and forces were conducted using MATLAB software to verify the motion of the swash plate. Furthermore, finite element analysis was also carried out to evaluate the rigidity and stress in the system. The analytical evaluation has shown that as the swash plate angle increases, the required control force and torque increase almost linearly. However, the change of the plate angle was found to have no effect on the force exerted on the X-axis and the torque exerted on the Z-axis. DOI: 10.1115/1.4004578 American Society of Mechanical Engineers (ASME) 2011 Article PeerReviewed Norhirni, M.Z. and Abd Shukor, Mohd Hamdi and Nurmaya Musa, S. and Saw, L.H. and Mardi, N.A. and Hilman, N. (2011) Load and stress analysis for the swash plate of an axial piston pump/motor. Journal of Dynamic Systems, Measurement, and Control, 133 (6). ISSN 0022-0434 |
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TS Manufactures Norhirni, M.Z. Abd Shukor, Mohd Hamdi Nurmaya Musa, S. Saw, L.H. Mardi, N.A. Hilman, N. Load and stress analysis for the swash plate of an axial piston pump/motor |
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In an axial piston pump design, the swash plate plays an important role in controlling the displacement of the pump, especially in a closed loop system. In this paper, the axial piston pump is incorporated into the design of a hydraulic regenerative braking system for hybrid vehicles. The pump in this configuration should function in dual mode, as a pump and as a motor. For this to occur, the swash plate should swing in two opposite directions. The swash plate presented in this paper is designed for stability and ease of control. Analytical analysis of torque and forces were conducted using MATLAB software to verify the motion of the swash plate. Furthermore, finite element analysis was also carried out to evaluate the rigidity and stress in the system. The analytical evaluation has shown that as the swash plate angle increases, the required control force and torque increase almost linearly. However, the change of the plate angle was found to have no effect on the force exerted on the X-axis and the torque exerted on the Z-axis. DOI: 10.1115/1.4004578 |
format |
Article |
author |
Norhirni, M.Z. Abd Shukor, Mohd Hamdi Nurmaya Musa, S. Saw, L.H. Mardi, N.A. Hilman, N. |
author_facet |
Norhirni, M.Z. Abd Shukor, Mohd Hamdi Nurmaya Musa, S. Saw, L.H. Mardi, N.A. Hilman, N. |
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Norhirni, M.Z. |
title |
Load and stress analysis for the swash plate of an axial piston pump/motor |
title_short |
Load and stress analysis for the swash plate of an axial piston pump/motor |
title_full |
Load and stress analysis for the swash plate of an axial piston pump/motor |
title_fullStr |
Load and stress analysis for the swash plate of an axial piston pump/motor |
title_full_unstemmed |
Load and stress analysis for the swash plate of an axial piston pump/motor |
title_sort |
load and stress analysis for the swash plate of an axial piston pump/motor |
publisher |
American Society of Mechanical Engineers (ASME) |
publishDate |
2011 |
url |
http://eprints.um.edu.my/6923/ |
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1713200131333947392 |
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13.211869 |