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首页> 外文期刊>ACS Omega >Experimental Study on Thermal Conductivity and Magnetization Behaviors of Kerosene-Based Ferrofluid Loaded with Multiwalled Carbon Nanotubes
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Experimental Study on Thermal Conductivity and Magnetization Behaviors of Kerosene-Based Ferrofluid Loaded with Multiwalled Carbon Nanotubes

机译:多壁碳纳米管负荷煤油基铁物流体热导电性和磁化行为的实验研究

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Kerosene-based ferrofluid (FF) loaded with multiwalled carbon nanotubes (MCNTs) is prepared and characterized to enhance heat conduction and furthermore for potential application in high-speed ferrofluid seals. The present study investigates kerosene-based ferrofluid loaded with MCNTs for the thermal conductivity and magnetization behaviors by varying temperature, weight fractions of MCNTs, and functional groups of MCNTs. The thermal conductivity is then measured by using a transient hot wire method, and magnetization behaviors are measured by using vibrator sample magnetometers. Microstructures among MCNTs and microstructures between MCNTs and magnetic nanoparticles in nanofluids are analyzed by optical microscopy and transmission electron microscopy. Experiments are carried out in the temperature range of 20–50 °C, MCNT weight fraction range of 0–1% for kerosene-based ferrofluid loaded with pristine MCNTs (p-MCNTs), MCNTs functionalized with carboxylic groups (MCNTs-COOH), and MCNTs functionalized with hydroxyl groups (MCNTs-OH). Results show that thermal conductivity and magnetization of FF + MCNTs nanofluids decrease with the increase in temperature. The addition of MCNTs increases the thermal conductivity and decreases the magnetization of the original ferrofluid, especially in the FF + p-MCNTs nanofluids. Furthermore, the addition of 1 wt % p-MCNTs increases the thermal conductivity and decreases the magnetization of the original ferrofluid by 12.47 and 7.73%, respectively. Moreover, the FF + 1 wt % p-MCNTs nanofluid can be stable for at least eleven weeks, which might be basically applied to high-speed ferrofluid seals.
机译:制备煤油基的铁氟流(FF)配有多壁碳纳米管(MCNT),并表征以增强热传导,以及在高速铁物流体密封件中的潜在应用。本研究通过不同温度,重量分数的MCNT和MCNT的官能团,研究了由MCNT的基于MCNT的基于煤油的铁磁流体调查。然后通过使用瞬态热线方法测量导热率,通过使用振动器样品磁力计测量磁化行为。光学显微镜和透射电子显微镜分析MCNT和磁性纳米粒子的MCNT和微结构之间的微观结构。实验在20-50℃的温度范围内进行,MCNT重量分数为0-1%的煤油基的铁磁石流体,其载有原始MCNT(P-MCNT),用羧基(MCNT-COOH)官能化的MCNT,和用羟基官能化的MCNT(MCNT-OH)。结果表明,FF + MCNT的导热性和磁化纳米流体随温度的增加而降低。添加MCNT增加了导热率并降低原始铁物流体的磁化,尤其是在FF + P-MCNT纳米流体中。此外,加入1wt%p-mcnts增加了导热率,并将原始铁物流体的磁化分别降低12.47和7.73%。此外,FF + 1wt%p-mcnts纳米流体可稳定至少11周,这可能基本上施加到高速铁物流体密封件上。

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