Effect of green thickener and additive on friction and wear performance of palm ester bio-grease

Efforts to develop innovative and environmentally friendly lubricants are of increasing interest nowadays, especially for lubricant applications exposed to the environment, particularly railway lubrication. Most of the existing commercial greases contain toxic and restricted materials that may harm...

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Published in:JURNAL TRIBOLOGI
Main Authors: Razak, Izatul Hamimi Abdul; Ahmad, Mohamad Ali; Azizan, Muhammad Ammar
Format: Article
Language:English
Published: MALAYSIAN TRIBOLOGY SOC-MYTRIBOS 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001339294800003
author Razak
Izatul Hamimi Abdul; Ahmad
Mohamad Ali; Azizan
Muhammad Ammar
spellingShingle Razak
Izatul Hamimi Abdul; Ahmad
Mohamad Ali; Azizan
Muhammad Ammar
Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
Engineering
author_facet Razak
Izatul Hamimi Abdul; Ahmad
Mohamad Ali; Azizan
Muhammad Ammar
author_sort Razak
spelling Razak, Izatul Hamimi Abdul; Ahmad, Mohamad Ali; Azizan, Muhammad Ammar
Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
JURNAL TRIBOLOGI
English
Article
Efforts to develop innovative and environmentally friendly lubricants are of increasing interest nowadays, especially for lubricant applications exposed to the environment, particularly railway lubrication. Most of the existing commercial greases contain toxic and restricted materials that may harm the environment. This study aimed to evaluate the effect of green thickeners and additives on the friction and wear performance of a newly developed palm bio-grease. The bio-grease was formulated with palm esters, thickened by calcium complex soap, and enhanced with combined anti-wear additives: calcium carbonate (CaCO3) and hexagonal boron nitride (hBN). Friction and wear properties of the palm bio-grease were investigated through pin-on-disc methodology. The test results revealed excellent tribological properties of the palm ester bio-grease developed with the combined additives, exhibiting 24% lower friction coefficient compared to commercial grease. Minimum pin wear rate was also observed, which was 17% lower than plain palm ester bio-grease. Thus, these findings offer insightful information for the development of an innovative bio-based grease with green and costeffective additives for railway lubrication. The potential of palm bio-grease can be thoroughly evaluated through field tests, aiming to refine its applicability and performance.
MALAYSIAN TRIBOLOGY SOC-MYTRIBOS
2289-7232

2024
42


Engineering

WOS:001339294800003
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001339294800003
title Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
title_short Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
title_full Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
title_fullStr Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
title_full_unstemmed Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
title_sort Effect of green thickener and additive on friction and wear performance of palm ester bio-grease
container_title JURNAL TRIBOLOGI
language English
format Article
description Efforts to develop innovative and environmentally friendly lubricants are of increasing interest nowadays, especially for lubricant applications exposed to the environment, particularly railway lubrication. Most of the existing commercial greases contain toxic and restricted materials that may harm the environment. This study aimed to evaluate the effect of green thickeners and additives on the friction and wear performance of a newly developed palm bio-grease. The bio-grease was formulated with palm esters, thickened by calcium complex soap, and enhanced with combined anti-wear additives: calcium carbonate (CaCO3) and hexagonal boron nitride (hBN). Friction and wear properties of the palm bio-grease were investigated through pin-on-disc methodology. The test results revealed excellent tribological properties of the palm ester bio-grease developed with the combined additives, exhibiting 24% lower friction coefficient compared to commercial grease. Minimum pin wear rate was also observed, which was 17% lower than plain palm ester bio-grease. Thus, these findings offer insightful information for the development of an innovative bio-based grease with green and costeffective additives for railway lubrication. The potential of palm bio-grease can be thoroughly evaluated through field tests, aiming to refine its applicability and performance.
publisher MALAYSIAN TRIBOLOGY SOC-MYTRIBOS
issn 2289-7232

publishDate 2024
container_volume 42
container_issue
doi_str_mv
topic Engineering
topic_facet Engineering
accesstype
id WOS:001339294800003
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001339294800003
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