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Tribological behavior of organic formulated anti-wear additive under high frequency reciprocating rig and unidirectional orientations: particles transport behavior and film formation mechanism

Opia, Anthony Chukwunonso and Mohd. Kameil, Abdul Hamid and Syahrullail, Samion and Johnson, Charles A. N. and Izmi, Mazali Izhari and Mamah, Stanley Chinedu and Ali, Audu Ibrahim and Abd. Rahim, Abu Bakar and Veza, Ibham (2022) Tribological behavior of organic formulated anti-wear additive under high frequency reciprocating rig and unidirectional orientations: particles transport behavior and film formation mechanism. Tribology International, 167 (NA). pp. 1-17. ISSN 0301-679X

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Official URL: http://dx.doi.org/10.1016/j.triboint.2021.107415

Abstract

Tribological behavior of Eichhornia crassipes nanotubes (EC-CNT) particles and transport phenomenon, which affect the tribological characteristic of the lubricant was investigated in this study. The investigation employed unidirectional and reciprocating sliding tribo-meter. The study was done in terms of friction and wear diameter reduction and surface wear analysis. EC-CNT particle concentration of 0.5, 1, 1.5 wt% were used alongside base rapeseed oil. Friction reduction using 1 wt% EC-CNT nanoparticle under unidirectional testing mode was 49% while reciprocating mode was 58.1% against base lubricant. However, wear scar radius reduction under unidirectional mode was 23.4%, observed closer to base oil lubricated wear scar radius 207.03 µm, whereas reciprocating has 52.2% compared to base oil lubricated wear radius 183.7 µm. The orientation mode analysis revealed that particles were found accumulated at the ball front for both modes and appear more under unidirectional mode leading to starvation of lubricant at the sliding contact region. Also, crushing of particles was observed in both operations both much with reciprocating sliding condition. Furthermore, wide flat film growth structure was found with reciprocating mode, thereby makes lubricant accessible to the sliding contact zone, leading to outstanding friction and wear reduction.

Item Type:Article
Uncontrolled Keywords:base rapeseed oil, EC-CNT nanoparticles, lubrication film mechanism, particles transport behavior, sliding orientations
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:104693
Deposited By: Yanti Mohd Shah
Deposited On:25 Feb 2024 03:01
Last Modified:25 Feb 2024 03:01

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