Analysis of lubricant retention property and tribological property of C/SiC composite material

Composite materials have attracted more and more attention because of their special properties. However, the tribological properties of the composite material still need further study because of their complex structure and many influencing factors. In order to compare the influence of friction pair...

Full description

Bibliographic Details
Main Authors: Tianyi SUI, Bin LIN, Jinhua WEI, Haoji WANG, Shuai YAN
Format: Article
Language:zho
Published: Hebei University of Science and Technology 2018-06-01
Series:Journal of Hebei University of Science and Technology
Subjects:
Online Access:http://xuebao.hebust.edu.cn/hbkjdx/ch/reader/create_pdf.aspx?file_no=b201803001&flag=1&journal_
_version_ 1819010877206036480
author Tianyi SUI
Bin LIN
Jinhua WEI
Haoji WANG
Shuai YAN
author_facet Tianyi SUI
Bin LIN
Jinhua WEI
Haoji WANG
Shuai YAN
author_sort Tianyi SUI
collection DOAJ
description Composite materials have attracted more and more attention because of their special properties. However, the tribological properties of the composite material still need further study because of their complex structure and many influencing factors. In order to compare the influence of friction pair on the tribological property and lubricant retention property of C/SiC composite material, the tribological properties of C/SiC composite material sliding against 45# steel and ZrO2 are studied based on pin on disc test method. The wear surface of C/SiC composite material is characterized by 3D profiler. The lubricant retention property is investigated based on the 3D surface topography. The result shows that C/SiC composite material wears heavily when sliding against 45# steel and the lubricant retention properties decreases dramatically. C/SiC composite material exhibits low friction coefficient and wear when sliding against ZrO2 material, and the wear surface has good load-carrying property and lubricant retention property, which indicates that C/SiC composite material and ZrO2 are good friction pair. The research result provides strong support to boarding the application and revealing the tribological properties of C/SiC composite material.
first_indexed 2024-12-21T01:19:14Z
format Article
id doaj.art-ffb6e903fdac4fd2b5002c40d5137d13
institution Directory Open Access Journal
issn 1008-1542
language zho
last_indexed 2024-12-21T01:19:14Z
publishDate 2018-06-01
publisher Hebei University of Science and Technology
record_format Article
series Journal of Hebei University of Science and Technology
spelling doaj.art-ffb6e903fdac4fd2b5002c40d5137d132022-12-21T19:20:42ZzhoHebei University of Science and TechnologyJournal of Hebei University of Science and Technology1008-15422018-06-0139319119710.7535/hbkd.2018yx03002b201803001Analysis of lubricant retention property and tribological property of C/SiC composite materialTianyi SUI0Bin LIN1Jinhua WEI2Haoji WANG3Shuai YAN4School of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaSchool of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaSchool of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaSchool of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaSchool of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaComposite materials have attracted more and more attention because of their special properties. However, the tribological properties of the composite material still need further study because of their complex structure and many influencing factors. In order to compare the influence of friction pair on the tribological property and lubricant retention property of C/SiC composite material, the tribological properties of C/SiC composite material sliding against 45# steel and ZrO2 are studied based on pin on disc test method. The wear surface of C/SiC composite material is characterized by 3D profiler. The lubricant retention property is investigated based on the 3D surface topography. The result shows that C/SiC composite material wears heavily when sliding against 45# steel and the lubricant retention properties decreases dramatically. C/SiC composite material exhibits low friction coefficient and wear when sliding against ZrO2 material, and the wear surface has good load-carrying property and lubricant retention property, which indicates that C/SiC composite material and ZrO2 are good friction pair. The research result provides strong support to boarding the application and revealing the tribological properties of C/SiC composite material.http://xuebao.hebust.edu.cn/hbkjdx/ch/reader/create_pdf.aspx?file_no=b201803001&flag=1&journal_tribologyC/SiCcomposite materiallubricant retention propertytribological property
spellingShingle Tianyi SUI
Bin LIN
Jinhua WEI
Haoji WANG
Shuai YAN
Analysis of lubricant retention property and tribological property of C/SiC composite material
Journal of Hebei University of Science and Technology
tribology
C/SiC
composite material
lubricant retention property
tribological property
title Analysis of lubricant retention property and tribological property of C/SiC composite material
title_full Analysis of lubricant retention property and tribological property of C/SiC composite material
title_fullStr Analysis of lubricant retention property and tribological property of C/SiC composite material
title_full_unstemmed Analysis of lubricant retention property and tribological property of C/SiC composite material
title_short Analysis of lubricant retention property and tribological property of C/SiC composite material
title_sort analysis of lubricant retention property and tribological property of c sic composite material
topic tribology
C/SiC
composite material
lubricant retention property
tribological property
url http://xuebao.hebust.edu.cn/hbkjdx/ch/reader/create_pdf.aspx?file_no=b201803001&flag=1&journal_
work_keys_str_mv AT tianyisui analysisoflubricantretentionpropertyandtribologicalpropertyofcsiccompositematerial
AT binlin analysisoflubricantretentionpropertyandtribologicalpropertyofcsiccompositematerial
AT jinhuawei analysisoflubricantretentionpropertyandtribologicalpropertyofcsiccompositematerial
AT haojiwang analysisoflubricantretentionpropertyandtribologicalpropertyofcsiccompositematerial
AT shuaiyan analysisoflubricantretentionpropertyandtribologicalpropertyofcsiccompositematerial