Experimental Study on Characteristics of Grinded Graphene Nanofluids with Surfactants

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초록

In earlier studies, much research has focused on increasing the efficiency of heat exchanger fields. Therefore, in this study, graphene nanofluid was fabricated for use as a heat transfer medium for a heat exchanger. Graphene has excellent electrical conductivity, mechanical properties, and heat transfer properties. It is expected that the heat transfer efficiency will be improved by fabricating the nanofluid. However, graphene is prone to sedimentation, because of its cohesion due to van der Waals binding force. In this experiment, a nanofluid was fabricated with enhanced dispersibility by surfactant and the ball-milling process. The zeta potential, absorbance, and thermal conductivity of the nanofluid were measured. As a result, when using the ratio of 2:1 (graphene:sodium dodecyl sulfate (SDS)), a higher thermal conductivity was obtained than in other conditions.

키워드

graphene; thermal conductivity; nanofluid; surfactant; zeta potential; dispersibility; THERMAL-CONDUCTIVITY ENHANCEMENT; HEAT-TRANSFER; CARBON NANOTUBES; PRESSURE-DROP; NANOPARTICLES; SUSPENSIONS; EXCHANGER
제목
Experimental Study on Characteristics of Grinded Graphene Nanofluids with Surfactants
저자
Seong, HeonJin; Kim, GwiNam; Jeon, JongHoon; Jeong, HyoMin; Noh, JungPil; Kim, YoungJu; Kim, HyunJi; Huh, SunChul
DOI
10.3390/ma11060950
발행일
2018-06
유형
Article
저널명
Materials
권
11
호
6