2022
DOI: 10.3390/nano12132287
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Tribological Properties and Lubrication Mechanism of Nickel Nanoparticles as an Additive in Lithium Grease

Abstract: Nanomaterials exhibit intriguing tribological performance and have received particular attention in the lubrication field. However, little research has been found that surveyed the application of nanometer Ni in lithium grease. In this study, nanometer Ni with an average size of 100 nm was synthesized by the direct reduction method and dispersed in lithium grease. The feasibility of nanometer Ni as a grease additive in different lubrication scenarios was evaluated by a four-ball friction tester and a TE77 reci… Show more

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Cited by 11 publications
(4 citation statements)
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“…Several authors, including Ramesh et al [26] & Wang et al [27], have examined a comparable occurrence involving the use of graphene oxide as an additive in different oils like water-based, hydrocarbon-based oil, and hexadecane-based oil (16C). Their collective findings indicated a noteworthy lessens in rubbing & erosion rates with the accumulation of graphene additives.…”
Section: Additives Belong To Graphene and Silicon Familymentioning
confidence: 99%
“…Several authors, including Ramesh et al [26] & Wang et al [27], have examined a comparable occurrence involving the use of graphene oxide as an additive in different oils like water-based, hydrocarbon-based oil, and hexadecane-based oil (16C). Their collective findings indicated a noteworthy lessens in rubbing & erosion rates with the accumulation of graphene additives.…”
Section: Additives Belong To Graphene and Silicon Familymentioning
confidence: 99%
“…An ultrasonic probe at a frequency of 30 kHz was used to further disperse the nanoparticle and enhance its dispersion stability. 33,53 The final products were labeled, wrapped in aluminum foil, and left to cool down overnight to room temperature. The grease stability was inspected on the next day.…”
Section: Grease Formulationmentioning
confidence: 99%
“…In the original publication [1], there was a mistake in Figure 3 as published. We inadvertently selected an incorrect TEM image for Figure 3a, which was captured from the sample of modified nanometer Ni instead of the nanometer Ni.…”
mentioning
confidence: 99%
“…We replace it with the correct TEM image representing the pristine nanometer Ni particles to this correspondence. The corrected Figure 3 Error in Figure 3 In the original publication [1], there was a mistake in Figure 3 as published. We inadvertently selected an incorrect TEM image for Figure 3a, which was captured from the sample of modified nanometer Ni instead of the nanometer Ni.…”
mentioning
confidence: 99%