236
Views
32
CrossRef citations to date
0
Altmetric
Original Articles

Power Loss in the Lubricating Gap between Cylinder Block and Valve Plate of Swash Plate Type Axial Piston Machines

&
Pages 29-43 | Received 26 Feb 2009, Accepted 12 May 2009, Published online: 21 Jan 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Zhaoqiang Wang, Shan Hu, Hong Ji, Zhen Wang & Wei Liang. (2020) Study on the characteristics of oil film load capacity for axial piston pump. Australian Journal of Mechanical Engineering 18:sup1, pages S140-S150.
Read now
Divya Thiagarajan, Sujan Dhar & Andrea Vacca. (2017) Improvement of Lubrication Performance in External Gear Machines through Micro-surface Wedged Gears. Tribology Transactions 60:2, pages 337-348.
Read now
Divya Thiagarajan, Sujan Dhar & Andrea Vacca. (2015) A Novel Fluid Structure Interaction-EHD Model and Optimization Procedure for an Asymmetrical Axially Balanced External Gear Machine. Tribology Transactions 58:2, pages 274-287.
Read now
Matteo Pelosi & Monika Ivantysynova. (2012) A Geometric Multigrid Solver for the Piston–Cylinder Interface of Axial Piston Machines. Tribology Transactions 55:2, pages 163-174.
Read now

Articles from other publishers (28)

Gang Luo, Tao He, Chuanli Wang, Kaiping Zhao, Yuanqing Luo & Ying Qin. (2024) A novel variable liquid-properties thermal network model for researching on thermodynamic characteristics of ethylene glycol piston pump. International Communications in Heat and Mass Transfer 150, pages 107185.
Crossref
Jian Fu, Dingchong Lyu, Jie Kang, Yuchen Li & Jiangao Zhao. (2023) Tribological characteristics of hard-to-hard matching materials of cylinder block/valve plate interface in electro-hydrostatic actuator pumps. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science.
Crossref
Luanxia Chen, Lizhi Shang, Zhanqiang Liu, Swarnava Mukherjee, Yukui Cai & Bing Wang. (2023) Effects of Chevron Micro-Textures on Tribological and Lubricating Performance of Cylinder Block/Valve Plate Interface in Axial Piston Pumps. Journal of Tribology 145:3.
Crossref
Haogong XU, Junhui ZHANG, Shoujun ZHAO, Junyuan CHEN, Weidi HUANG, Xiaochen HUANG, Fei LYU, Qi SU & Bing XU. (2023) Performance optimization for high speed axial piston pump considering cylinder block tilt. Chinese Journal of Aeronautics.
Crossref
Ahmed Shorbagy, Roman Ivantysyn & Jürgen Weber. (2022) Holistic Analysis of the Tribological Interfaces of an Axial Piston Pump – Focusing on the Pump Efficiency. Chemical Engineering & Technology 46:1, pages 5-13.
Crossref
Tianzhao Wang, Jingjing Fang, Hao Liu, Lijun Chen, Xiaoping Ouyang, Shengrong Guo, Xiaojun Zhao & Yijie Lu. (2022) Modeling and Characteristic Analysis of a Cylinder Block/Valve Plate Interface Oil Film Model for 35 MPa Aviation Piston Pumps. Machines 10:12, pages 1196.
Crossref
Luanxia Chen, Zhanqiang Liu, Yukui Cai & Bing Wang. (2022) Tribological Performance of Multiscale Micro-Textured H62 Brass Surface Fabricated by Micro-Milling and Wet Micro-Blasting. Journal of Tribology 144:9.
Crossref
Junhui Zhang, Haogong Xu, Junyuan Chen, Weidi Huang, Xiaochen Huang, Fei Lyu, Bing Xu, Min Pan & Qi Su. (2022) Modeling and Analysis of the tilt behavior of the cylinder block in a high-speed axial piston pump. Mechanism and Machine Theory 170, pages 104735.
Crossref
Paweł Załuski. (2022) Influence of Fluid Compressibility and Movements of the Swash Plate Axis of Rotation on the Volumetric Efficiency of Axial Piston Pumps. Energies 15:1, pages 298.
Crossref
Gaston Haidak & Dongyun Wang. 2022. Proceedings of the 2nd International Conference on Structural Damage Modelling and Assessment. Proceedings of the 2nd International Conference on Structural Damage Modelling and Assessment 113 120 .
Chenchen Zhang, Chenhang Zhu, Bin Meng & Sheng Li. (2021) Challenges and Solutions for High-Speed Aviation Piston Pumps: A Review. Aerospace 8:12, pages 392.
Crossref
Jiang'ao ZHAO, Yongling FU, Jiming MA, Jian FU, Qun CHAO & Yan WANG. (2021) Review of cylinder block/valve plate interface in axial piston pumps: Theoretical models, experimental investigations, and optimal design. Chinese Journal of Aeronautics 34:1, pages 111-134.
Crossref
Piotr Patrosz. 2021. Advances in Hydraulic and Pneumatic Drives and Control 2020. Advances in Hydraulic and Pneumatic Drives and Control 2020 76 89 .
Luanxia Chen, Zhanqiang Liu & Wengang Song. (2020) Process-surface morphology-tribological property relationships for H62 brass employing various manufacturing approaches. Tribology International 148, pages 106320.
Crossref
Chaoang Xiao & Hesheng Tang. (2020) Elastohydrodynamic lubrication characteristics of surface-textured slipper bearing in an axial piston pump. Journal of the Brazilian Society of Mechanical Sciences and Engineering 42:4.
Crossref
Shaogan Ye, Hesheng Tang, Yan Ren & Jiawei Xiang. (2020) Study on the load-carrying capacity of surface textured slipper bearing of axial piston pump. Applied Mathematical Modelling 77, pages 554-584.
Crossref
Guanglin Shi & Haiji Wang. (2019) Thermal-hydraulic model for axial piston pump with leakage and friction and its application. Industrial Lubrication and Tribology 71:6, pages 810-818.
Crossref
Wei Shen, Hamid Reza Karimi & Ruihan Zhao. (2019) Comparative analysis of component design problems for integrated hydraulic transformers. The International Journal of Advanced Manufacturing Technology 103:1-4, pages 389-407.
Crossref
Qun Chao, Junhui Zhang, Bing Xu, Hsinpu Huang & Min Pan. (2019) A Review of High-Speed Electro-Hydrostatic Actuator Pumps in Aerospace Applications: Challenges and Solutions. Journal of Mechanical Design 141:5.
Crossref
Jihai Jiang & Weipeng Yan. (2019) Effect of Temperature on the Cylinder Block/Valve Plate Interface Performance. Effect of Temperature on the Cylinder Block/Valve Plate Interface Performance.
Jiang Jihai & Yan Weipeng. (2019) An Approach to Predict Wear Distribution of Valve Plate in Elasto-Hydrodynamic Lubrication. IEEE Access 7, pages 86789-86797.
Crossref
Zhaoqiang Wang, Shan Hu, Hengyun Zhang, Hong Ji, Jian Yang & Wei Liang. (2018) Effect of Surface Texturing Parameters on the Lubrication Characteristics of an Axial Piston Pump Valve Plate. Lubricants 6:2, pages 49.
Crossref
Li Yang, Jia Yingmin, Sun Xu & Jiao Zongxia. (2017) Design, analysis and testing of a novel linear collaborative pump. Design, analysis and testing of a novel linear collaborative pump.
Francesco Gherardini, Barbara Zardin & Francesco Leali. (2016) A parametric CAD-based method for modelling and simulation of positive displacement machines. Journal of Mechanical Science and Technology 30:7, pages 3253-3263.
Crossref
Wu Di, Wang Shaoping & Shi Jian. (2015) Thermal modeling of axial piston pump and application. Thermal modeling of axial piston pump and application.
Jung-Hun Shin & Kyung-Woong Kim. (2014) Effect of surface non-flatness on the lubrication characteristics in the valve part of a swash-plate type axial piston pump. Meccanica 49:5, pages 1275-1295.
Crossref
Zhaoqiang Wang, Linyi Gu & Lin Li. (2013) Experimental studies on the overall efficiency performance of axial piston motor with a laser surface textured valve plate. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 227:7, pages 1049-1056.
Crossref
J. M. Bergada, D. L. Davies, S. Kumar & J. Watton. (2011) The effect of oil pressure and temperature on barrel film thickness and barrel dynamics of an axial piston pump. Meccanica 47:3, pages 639-654.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.