Binder assisted graphene derivatives as lubricants in copper: Improved tribological performance for industrial application

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Názov: Binder assisted graphene derivatives as lubricants in copper: Improved tribological performance for industrial application
Autori: Huang, Changjie, 1998, Zhao, Su, Chen, Ruiqi, 1997, Johansson, Erik, Aqeel, Muhammad, Klement, Uta, 1962, Andersson, Anna M., Taher, Mamoun, Palermo, Vincenzo, 1972, Sun, Jinhua, 1987
Zdroj: Grafen-polymer tryckdetektorer GAIA - Grafen Applikation i Industriell Anläggning iScience. 27(4)
Predmety: Materials chemistry, Materials application
Popis: Originally derived from graphite, high-quality single-layer graphene is an excellent anti-wear and -friction additive in metal matrix. Here, the tribological performance of 3 different commercialized graphene derivatives (e.g., graphene oxide [GO], reduced graphene oxide [RGO], and graphene nanoplatelet [GNP]) as additives in a Cu matrix, were investigated from an industrial perspective. To increase the interaction of graphene derivatives with Cu particles, and addressing the aggregation problem of the graphene derivatives, different binders (polyvinyl alcohol [PVA] and cellulose nanocrystals [CNC]) were introduced into the system. Benefiting from such a strategy, a uniform distribution of the graphene derivatives in Cu matrix was achieved with graphene loading up to 5 wt %. After high-temperature sintering, the graphene is preserved and well distributed in the Cu matrix. It was found that the GNP-containing sample shows the most stable friction coefficient behavior. However, GO and RGO also improve the tribological performance of Cu under different circumstances.
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Prístupová URL adresa: https://research.chalmers.se/publication/542188
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Items – Name: Title
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  Data: Binder assisted graphene derivatives as lubricants in copper: Improved tribological performance for industrial application
– Name: Author
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  Data: <searchLink fieldCode="AR" term="%22Huang%2C+Changjie%22">Huang, Changjie</searchLink>, 1998<br /><searchLink fieldCode="AR" term="%22Zhao%2C+Su%22">Zhao, Su</searchLink><br /><searchLink fieldCode="AR" term="%22Chen%2C+Ruiqi%22">Chen, Ruiqi</searchLink>, 1997<br /><searchLink fieldCode="AR" term="%22Johansson%2C+Erik%22">Johansson, Erik</searchLink><br /><searchLink fieldCode="AR" term="%22Aqeel%2C+Muhammad%22">Aqeel, Muhammad</searchLink><br /><searchLink fieldCode="AR" term="%22Klement%2C+Uta%22">Klement, Uta</searchLink>, 1962<br /><searchLink fieldCode="AR" term="%22Andersson%2C+Anna+M%2E%22">Andersson, Anna M.</searchLink><br /><searchLink fieldCode="AR" term="%22Taher%2C+Mamoun%22">Taher, Mamoun</searchLink><br /><searchLink fieldCode="AR" term="%22Palermo%2C+Vincenzo%22">Palermo, Vincenzo</searchLink>, 1972<br /><searchLink fieldCode="AR" term="%22Sun%2C+Jinhua%22">Sun, Jinhua</searchLink>, 1987
– Name: TitleSource
  Label: Source
  Group: Src
  Data: <i>Grafen-polymer tryckdetektorer GAIA - Grafen Applikation i Industriell Anläggning iScience</i>. 27(4)
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  Label: Subject Terms
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  Data: <searchLink fieldCode="DE" term="%22Materials+chemistry%22">Materials chemistry</searchLink><br /><searchLink fieldCode="DE" term="%22Materials+application%22">Materials application</searchLink>
– Name: Abstract
  Label: Description
  Group: Ab
  Data: Originally derived from graphite, high-quality single-layer graphene is an excellent anti-wear and -friction additive in metal matrix. Here, the tribological performance of 3 different commercialized graphene derivatives (e.g., graphene oxide [GO], reduced graphene oxide [RGO], and graphene nanoplatelet [GNP]) as additives in a Cu matrix, were investigated from an industrial perspective. To increase the interaction of graphene derivatives with Cu particles, and addressing the aggregation problem of the graphene derivatives, different binders (polyvinyl alcohol [PVA] and cellulose nanocrystals [CNC]) were introduced into the system. Benefiting from such a strategy, a uniform distribution of the graphene derivatives in Cu matrix was achieved with graphene loading up to 5 wt %. After high-temperature sintering, the graphene is preserved and well distributed in the Cu matrix. It was found that the GNP-containing sample shows the most stable friction coefficient behavior. However, GO and RGO also improve the tribological performance of Cu under different circumstances.
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