Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication

A cylinder liner and piston ring running under starved lubrication near the top dead centre (TDC) and bottom dead centre (BDC) cause abnormal friction and wear during operation of a marine diesel engine. The method of laser texturing is proposed to improve the surface friction property under this co...

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Main Authors: Wu Shen, Zhang Pan, Wei Haijun, Chen Lei
Format: Article
Language:English
Published: Sciendo 2020-06-01
Series:Polish Maritime Research
Subjects:
Online Access:https://doi.org/10.2478/pomr-2020-0031
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spelling doaj-0494a9a59498488ba0ceb9e7aad0f8442021-09-05T14:01:09ZengSciendoPolish Maritime Research2083-74292020-06-012729610610.2478/pomr-2020-0031pomr-2020-0031Influence of Surface Texture Parameters on Friction Characteristics Under Starved LubricationWu Shen0Zhang Pan1Wei Haijun2Chen Lei3Shanghai Maritime University,ChinaShanghai Maritime University,ChinaShanghai Maritime University,ChinaShanghai Maritime University,ChinaA cylinder liner and piston ring running under starved lubrication near the top dead centre (TDC) and bottom dead centre (BDC) cause abnormal friction and wear during operation of a marine diesel engine. The method of laser texturing is proposed to improve the surface friction property under this condition. Spherical crown pits with different parameters were formed on the surface of samples by femtosecond laser processing. The BDC and TDC conditions of oil starvation were simulated in a reciprocating friction and wear experiment, and a numerical model of surface texture lubrication based on the Reynolds equation was established. The influence of the distribution density, diameter, and depth parameters of the texture on the surface properties was studied. In the BDC condition, compared with the untextured surface, the average coefficient of friction (COF) can be reduced by up to 24% and the average friction force can be reduced by up to 18%. In the TDC condition, the COF can be reduced by up to 19%, and the average friction force can be reduced by up to 18%. Therefore, the textures with various parameters should be arranged in different positions on the cylinder liner; more attention should be paid to the optimisation of diameter in the texture of the cylinder liner near the BDC, whereas more attention should be paid to the optimisation of distribution density in the texture of the cylinder liner near the TDChttps://doi.org/10.2478/pomr-2020-0031marine diesel enginecylinder liner and piston ringfriction reductionstarved lubricationlaser texturing
collection DOAJ
language English
format Article
sources DOAJ
author Wu Shen
Zhang Pan
Wei Haijun
Chen Lei
spellingShingle Wu Shen
Zhang Pan
Wei Haijun
Chen Lei
Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication
Polish Maritime Research
marine diesel engine
cylinder liner and piston ring
friction reduction
starved lubrication
laser texturing
author_facet Wu Shen
Zhang Pan
Wei Haijun
Chen Lei
author_sort Wu Shen
title Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication
title_short Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication
title_full Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication
title_fullStr Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication
title_full_unstemmed Influence of Surface Texture Parameters on Friction Characteristics Under Starved Lubrication
title_sort influence of surface texture parameters on friction characteristics under starved lubrication
publisher Sciendo
series Polish Maritime Research
issn 2083-7429
publishDate 2020-06-01
description A cylinder liner and piston ring running under starved lubrication near the top dead centre (TDC) and bottom dead centre (BDC) cause abnormal friction and wear during operation of a marine diesel engine. The method of laser texturing is proposed to improve the surface friction property under this condition. Spherical crown pits with different parameters were formed on the surface of samples by femtosecond laser processing. The BDC and TDC conditions of oil starvation were simulated in a reciprocating friction and wear experiment, and a numerical model of surface texture lubrication based on the Reynolds equation was established. The influence of the distribution density, diameter, and depth parameters of the texture on the surface properties was studied. In the BDC condition, compared with the untextured surface, the average coefficient of friction (COF) can be reduced by up to 24% and the average friction force can be reduced by up to 18%. In the TDC condition, the COF can be reduced by up to 19%, and the average friction force can be reduced by up to 18%. Therefore, the textures with various parameters should be arranged in different positions on the cylinder liner; more attention should be paid to the optimisation of diameter in the texture of the cylinder liner near the BDC, whereas more attention should be paid to the optimisation of distribution density in the texture of the cylinder liner near the TDC
topic marine diesel engine
cylinder liner and piston ring
friction reduction
starved lubrication
laser texturing
url https://doi.org/10.2478/pomr-2020-0031
work_keys_str_mv AT wushen influenceofsurfacetextureparametersonfrictioncharacteristicsunderstarvedlubrication
AT zhangpan influenceofsurfacetextureparametersonfrictioncharacteristicsunderstarvedlubrication
AT weihaijun influenceofsurfacetextureparametersonfrictioncharacteristicsunderstarvedlubrication
AT chenlei influenceofsurfacetextureparametersonfrictioncharacteristicsunderstarvedlubrication
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