Experimental investigation of EHD grease lubrication in finite line contacts

Abstract The objective of this study was to investigate the grease-lubricated film-forming mechanisms in the finite line contact and to improve the grease-lubricated finite line contact’s film-forming capacity. An elastohydrodynamic lubrication (EHL) test rig with two interferometry microscopes, whi...

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Main Authors: Zhijian Wang, Xuejin Shen, Xiaoyang Chen, Dehua Tao, Lei Shi, Shuangbiao Liu
Format: Article
Language:English
Published: SpringerOpen 2018-05-01
Series:Friction
Subjects:
EHL
Online Access:http://link.springer.com/article/10.1007/s40544-018-0208-8
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spelling doaj-7a98a50429c3404a9c8112745994d8db2020-11-25T01:09:05ZengSpringerOpenFriction2223-76902223-77042018-05-017323724510.1007/s40544-018-0208-8Experimental investigation of EHD grease lubrication in finite line contactsZhijian Wang0Xuejin Shen1Xiaoyang Chen2Dehua Tao3Lei Shi4Shuangbiao Liu5School of Mechatronics Engineering and Automation, Shanghai UniversitySchool of Mechatronics Engineering and Automation, Shanghai UniversitySchool of Mechatronics Engineering and Automation, Shanghai UniversitySchool of Mechatronics Engineering and Automation, Shanghai UniversitySchool of Mechatronics Engineering and Automation, Shanghai UniversityCaterpillar IncAbstract The objective of this study was to investigate the grease-lubricated film-forming mechanisms in the finite line contact and to improve the grease-lubricated finite line contact’s film-forming capacity. An elastohydrodynamic lubrication (EHL) test rig with two interferometry microscopes, which could simultaneously monitor two different contact locations in the finite line contact, was constructed in order to study the influences of the grease thickener formulation on the film thickness and lubrication condition. By using the relative light intensity method, the thickness maps of the grease-lubricated film were calculated from the interferometer images captured by the two microscopes. The test results revealed that the grease thickener’s formulation had remarkable effects on film formation and the perturbation of film thickness. For the lithium-based grease, the film’s thickness near the two ends of the roller was prone to severe perturbation caused by the conglomeration of clumps that were hard to shear. For the aluminum-complex-based grease, the fibers tended to accumulate in the middle of the roller rather than at the two ends. The urea-based grease could be easily sheared into smaller particles. In addition to the straight-line profile rollers, the logarithmic profile rollers were tested and found to effectively enhance the axial grease flow, increase the axial shear stress, and thus shear more fibers into particles within the contact area.http://link.springer.com/article/10.1007/s40544-018-0208-8EHLfinite line contactgreasefilm thickness
collection DOAJ
language English
format Article
sources DOAJ
author Zhijian Wang
Xuejin Shen
Xiaoyang Chen
Dehua Tao
Lei Shi
Shuangbiao Liu
spellingShingle Zhijian Wang
Xuejin Shen
Xiaoyang Chen
Dehua Tao
Lei Shi
Shuangbiao Liu
Experimental investigation of EHD grease lubrication in finite line contacts
Friction
EHL
finite line contact
grease
film thickness
author_facet Zhijian Wang
Xuejin Shen
Xiaoyang Chen
Dehua Tao
Lei Shi
Shuangbiao Liu
author_sort Zhijian Wang
title Experimental investigation of EHD grease lubrication in finite line contacts
title_short Experimental investigation of EHD grease lubrication in finite line contacts
title_full Experimental investigation of EHD grease lubrication in finite line contacts
title_fullStr Experimental investigation of EHD grease lubrication in finite line contacts
title_full_unstemmed Experimental investigation of EHD grease lubrication in finite line contacts
title_sort experimental investigation of ehd grease lubrication in finite line contacts
publisher SpringerOpen
series Friction
issn 2223-7690
2223-7704
publishDate 2018-05-01
description Abstract The objective of this study was to investigate the grease-lubricated film-forming mechanisms in the finite line contact and to improve the grease-lubricated finite line contact’s film-forming capacity. An elastohydrodynamic lubrication (EHL) test rig with two interferometry microscopes, which could simultaneously monitor two different contact locations in the finite line contact, was constructed in order to study the influences of the grease thickener formulation on the film thickness and lubrication condition. By using the relative light intensity method, the thickness maps of the grease-lubricated film were calculated from the interferometer images captured by the two microscopes. The test results revealed that the grease thickener’s formulation had remarkable effects on film formation and the perturbation of film thickness. For the lithium-based grease, the film’s thickness near the two ends of the roller was prone to severe perturbation caused by the conglomeration of clumps that were hard to shear. For the aluminum-complex-based grease, the fibers tended to accumulate in the middle of the roller rather than at the two ends. The urea-based grease could be easily sheared into smaller particles. In addition to the straight-line profile rollers, the logarithmic profile rollers were tested and found to effectively enhance the axial grease flow, increase the axial shear stress, and thus shear more fibers into particles within the contact area.
topic EHL
finite line contact
grease
film thickness
url http://link.springer.com/article/10.1007/s40544-018-0208-8
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AT xuejinshen experimentalinvestigationofehdgreaselubricationinfinitelinecontacts
AT xiaoyangchen experimentalinvestigationofehdgreaselubricationinfinitelinecontacts
AT dehuatao experimentalinvestigationofehdgreaselubricationinfinitelinecontacts
AT leishi experimentalinvestigationofehdgreaselubricationinfinitelinecontacts
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