Lubrication Characteristics on Sliding Surfaces in a Piston Pump and Motor During Running-In Tests / K. Tanaka, K. Kyogoku, T. Nakahara
- Conference Author
- Hydraulic Failure Analysis: Fluids, Components, and System Effects (1999 : Reno, Nevada)
- Physical Description
- 1 online resource (13 pages) : illustrations, figures, tables
- Additional Creators
- Tanaka, K., Kyogoku, K., Nakahara, T., American Society for Testing and Materials, and ASTM International
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- Lubrication characteristics on the sliding surfaces between piston and cylinder in a piston pump and motor with running-in have been investigated. The friction characteristics on the sliding surfaces of the friction test machine have been examined with the use of pin-on-V-block before running-in tests. The running-in tests with model apparatus of the piston pump and motor have been carried out under the mixed lubrication condition in the Stribeck curve. The running-in condition was chosen after considering parameters such as friction force, separation voltage and roughness. In these parameters, friction force and separation voltage have played an important role for the evaluation of effective running-in. It is clarified that the rate of running-in of the cylinder is lower than that of the piston. The effects of the piston top profile and stiffness of the piston on the lubrication characteristics have been studied.
- Dates of Publication and/or Sequential Designation
- Volume 2001, Issue 1339 (January 2001)
- Subject(s)
- Other Subject(s)
- ISBN
- 9780803155671 (e-ISBN)
9780803128835
0803128835 - Digital File Characteristics
- text file PDF
- Bibliography Note
- Includes bibliographical references 7.
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- Also available online via the World Wide Web. Tables of contents and abstracts freely available; full-text articles available by subscription.
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Also available in PDF edition. - Reproduction Note
- Electronic reproduction. W. Conshohocken, Pa. : ASTM International, 2001. Mode of access: World Wide Web. System requirements: Web browser. Access may be restricted to users at subscribing institutions.
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- Mode of access: World Wide Web.
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- ASTM International PDF Purchase price USD25.
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