Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil

Lubricating oil is known as "the blood to maintain the normal operation of machinery", and additives are an indispensable and important part of lubricating oil. In this paper, the Polymer-based Composite Nano-additive (PCNA) suitable for armored vehicle engine lubricating oil was developed...

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Main Authors: Fan Bingli, Li Zhengjie, Sun Annan, Guo Yiwei, Qi Xiaowen, Liu Changxin
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2022/05/matecconf_msms2022_01009.pdf
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author Fan Bingli
Li Zhengjie
Sun Annan
Guo Yiwei
Qi Xiaowen
Liu Changxin
author_facet Fan Bingli
Li Zhengjie
Sun Annan
Guo Yiwei
Qi Xiaowen
Liu Changxin
author_sort Fan Bingli
collection DOAJ
description Lubricating oil is known as "the blood to maintain the normal operation of machinery", and additives are an indispensable and important part of lubricating oil. In this paper, the Polymer-based Composite Nano-additive (PCNA) suitable for armored vehicle engine lubricating oil was developed, the physical and chemical properties of lubricating oil containing additives were carried out. The results showed that adding an appropriate amount (3 vol.%) of additives could improve the low-temperature fluidity of lubricating oil and improve the kinematic viscosity of lubricating oil without affecting the viscositytemperature characteristics of lubricating oil. The four-ball testing machine, high temperature end face testing machine and engine bench are used to measure the anti-friction lubrication effect and anti-wear ability improvement effect of the additive on lubricating oil. The experimental results show that the additive can effectively improve the antifriction, lubrication and anti-wear performance of lubricating oil. In addition, the addition of the additive can effectively improve the running state of the engine, and the engine noise is obviously reduced. Finally, the additives developed in this paper are compared with three common brand additives in the market by using the high temperature end face testing machine. The results show that the additive developed in this paper has certain advantages in improving the antifriction and lubrication effect of lubricating oil.
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spelling doaj.art-8a23bbeb2b404269b7df6beaf465c09c2022-12-22T00:14:37ZengEDP SciencesMATEC Web of Conferences2261-236X2022-01-013580100910.1051/matecconf/202235801009matecconf_msms2022_01009Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating OilFan Bingli0Li Zhengjie1Sun Annan2Guo Yiwei3Qi Xiaowen4Liu Changxin5School of Mechanical Engineering, Yanshan UniversitySchool of Mechanical Engineering, Yanshan UniversitySchool of Mechanical Engineering, Yanshan UniversitySchool of Mechanical Engineering, Yanshan UniversitySchool of Mechanical Engineering, Yanshan UniversitySchool of Mechanical Engineering, Yanshan UniversityLubricating oil is known as "the blood to maintain the normal operation of machinery", and additives are an indispensable and important part of lubricating oil. In this paper, the Polymer-based Composite Nano-additive (PCNA) suitable for armored vehicle engine lubricating oil was developed, the physical and chemical properties of lubricating oil containing additives were carried out. The results showed that adding an appropriate amount (3 vol.%) of additives could improve the low-temperature fluidity of lubricating oil and improve the kinematic viscosity of lubricating oil without affecting the viscositytemperature characteristics of lubricating oil. The four-ball testing machine, high temperature end face testing machine and engine bench are used to measure the anti-friction lubrication effect and anti-wear ability improvement effect of the additive on lubricating oil. The experimental results show that the additive can effectively improve the antifriction, lubrication and anti-wear performance of lubricating oil. In addition, the addition of the additive can effectively improve the running state of the engine, and the engine noise is obviously reduced. Finally, the additives developed in this paper are compared with three common brand additives in the market by using the high temperature end face testing machine. The results show that the additive developed in this paper has certain advantages in improving the antifriction and lubrication effect of lubricating oil.https://www.matec-conferences.org/articles/matecconf/pdf/2022/05/matecconf_msms2022_01009.pdfpolymer-based composite nano-additivesphysical and chemical propertiesanti-friction lubricationanti-wear properties
spellingShingle Fan Bingli
Li Zhengjie
Sun Annan
Guo Yiwei
Qi Xiaowen
Liu Changxin
Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil
MATEC Web of Conferences
polymer-based composite nano-additives
physical and chemical properties
anti-friction lubrication
anti-wear properties
title Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil
title_full Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil
title_fullStr Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil
title_full_unstemmed Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil
title_short Experimental Study on Tribological Properties of Polymer-based Composite Nano-additives Suitable for Armored Vehicle Engine Lubricating Oil
title_sort experimental study on tribological properties of polymer based composite nano additives suitable for armored vehicle engine lubricating oil
topic polymer-based composite nano-additives
physical and chemical properties
anti-friction lubrication
anti-wear properties
url https://www.matec-conferences.org/articles/matecconf/pdf/2022/05/matecconf_msms2022_01009.pdf
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