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Effect of Exfoliated Graphene on Thermal Conductivity Enhancements of Graphene-lronoxide Hybrid Nanofluids: Experimental Investigation and Effective Medium Theories

机译:剥落石墨烯对石墨烯 - 六氧化锰杂交纳米流体的热导率增强的影响:实验研究和有效介质理论

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摘要

Reasoning of particular mechanism of anomalous thermal transport behaviours are not identified yet for the nanofluids. In this study, iron oxide (Maghemite: MH) and graphene (Gr) flake dispersed deionized water (DW) hybrid nanofluid system were developed for the first time to evaluate the thermal conductivity (TC) enhancements along with the analysis of anomalous TC behavior implementing modified effective medium theories (EMTs). A solvo-thermal two-step method was used to develop the MH nanoparticle and exfoliated Gr flake dispersed hybrid nanofluids with different compositions. Stability of as-prepared hybrid nanofluids were monitored using Ultraviolet-Visible (UV-Vis) spectroscopy. The maximum sedimentation rate was observed similar to 8.4 % after 600 hours. The results showed an overall maximum TC enhancement of similar to 43 % at 25 degrees C. EMTs were modified with the consideration of flat geometry of Gr flake. It is found that, modified EMTs with the crumpled factor (due to the non-flatness or crumple of Gr flake) of similar to 0.205 the predicted effective TC enhancements are agreed with the experimental TC's of Gr-NMP/MH-DW hybrid nanofluids samples. The estimated crumple factor value of exfoliated Gr flakes using images analysis was also found nearly similar (similar to 0.232). This agreement exposed that, Gr flake's with negligible thickness compared to its extremely wide basal plane dimensions and its non-flatness or crumpled geometry in the nanofluids have the leading impacts on the effective TC properties of the Gr flake dispersed nanofluids. This modified model opens the new doors to analyse the insight of the thermophysical properties of various types of nanofluids by introducing potential other parameters.
机译:对于纳米流体来说,尚未鉴定特定机理的特定机理。在该研究中,首次开发了氧化铁(Magemite:MH)和石墨烯(GR)薄片分散的去离子纳米流体系统,以评估导热率(TC)增强以及实施的异常TC行为的分析修改有效培养基理论(EMT)。用不同的组合物使用溶剂 - 热两步法用于开发MH纳米粒子和剥离的GR片分散的杂交纳米流体。使用紫外 - 可见(UV-VI)光谱监测制备的混合含有杂交纳米流体的稳定性。观察到最高沉降率在600小时后类似于8.4%。结果表明,在25摄氏度下,总体最大TC增强与43%相似。通过考虑GR薄片的平坦几何形状来修改EMT。发现,使用GR-NMP / MH-DW杂交纳米流体样品的实验Tc的实验Tc的折射率(由于GR薄片的非平坦度或GR薄片的非平坦度或褶皱)的修饰emts 。使用图像分析的剥离GR薄片的估计褶皱因子值也发现几乎相似(类似于0.232)。本协议暴露于,与其极宽的基底平面尺寸相比,GR薄片具有可忽略的厚度,并且其在纳米流体中的非平坦度或皱折几何形状具有对族聚体的有效TC性质的主要影响。这种改进的模型通过引入潜在的其他参数来打开新的门来分析各种类型纳米流体的热物理性质的洞察。

著录项

  • 来源
    《Journal of nano research》 |2021年第1期|97-114|共18页
  • 作者单位

    Sunway Univ Res Ctr Carbon Dioxide Capture & Utilisat CCDCU Sch Engn & Technol 5 Jalan Univ Petaling Jaya 47500 Selangor Darul Malaysia|Int Islamic Univ Malaysia Fac Engn Dept Mfg & Mat Engn Gombak Selangor Malaysia|Sunway Univ Res Ctr Nanomat & Energy Technol RCNMET Sch Engn & Technol 5 Jalan Univ Petaling Jaya 47500 Selangor Darul Malaysia;

    Int Islamic Univ Malaysia Fac Engn Dept Mech Engn Gombak Selangor Malaysia;

    Int Islamic Univ Malaysia Fac Engn Dept Biotechnol Engn Gombak Selangor Malaysia;

    Int Islamic Univ Malaysia Fac Engn Dept Mfg & Mat Engn Gombak Selangor Malaysia;

    Sunway Univ Res Ctr Nanomat & Energy Technol RCNMET Sch Engn & Technol 5 Jalan Univ Petaling Jaya 47500 Selangor Darul Malaysia|Univ Lancaster Dept Engn Lancaster LA1 4YW England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanofluids; Graphene; Maghemite; Thermal conductivity; Flake Geometry; Effective Medium Theories;

    机译:纳米流体;石墨烯;磁性电导率;剥落几何;有效的中等理论;
  • 入库时间 2022-08-19 01:58:03

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