首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Modified Two-Step Method to Prepare Long-Term Stable CNT Nanofluids for Heat Transfer Applications
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Modified Two-Step Method to Prepare Long-Term Stable CNT Nanofluids for Heat Transfer Applications

机译:改进的两步法制备用于传热应用的长期稳定的CNT纳米流体

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摘要

CNT nanofluids are getting attention in heat transfer applications due to their very high thermal conductivity in comparison with conventional fluids. For commercial exploitation of CNT nanofluids as heat transfer media, they must have long-term stability. In this study, the two-step method was modified to prepare dynamically stable CNT nanofluids by utilizing commercial grade multiwalled carbon nanotubes and SDBS as a surfactant. The modified technique consists of separation of coarse agglomerates of CNT from the CNT nanofluids by applying centrifugal action after its preparation. The effect of relative centrifugal force was also studied for the very first time on the stable concentration of CNT nanofluids. The stability of CNT nanofluids was analyzed by measurement of their CNT concentration and Zeta potential. Results showed that CNT nanofluids possess good stability and remain stable for more than 15 months. In addition to stability, thermo-physical properties such as thermal conductivity, density, and viscosity of CNT nanofluids were also measured. The results of this study elucidated the effect of RCF on the stable concentration of CNT nanofluids. It is expected that the results obtained in this study may significantly contribute to the proper tailoring of CNT nanofluids, by providing long-term stable CNT nanofluids which are suitable for industrial heat transfer applications.
机译:CNT纳米流体由于与常规流体相比非常高的导热性而在传热应用中受到关注。为了将CNT纳米流体用作传热介质进行商业开发,它们必须具有长期稳定性。在这项研究中,通过利用商业级多壁碳纳米管和SDBS作为表面活性剂,改进了两步法以制备动态稳定的CNT纳米流体。改进的技术包括在制备后通过施加离心作用从CNT纳米流体中分离出CNT的粗团聚物。首次也研究了相对离心力对CNT纳米流体稳定浓度的影响。 CNT纳米流体的稳定性通过测量其CNT浓度和Zeta电位进行分析。结果表明,CNT纳米流体具有良好的稳定性,并保持稳定超过15个月。除了稳定性之外,还测量了热物理性质,例如CNT纳米流体的导热率,密度和粘度。这项研究的结果阐明了RCF对CNT纳米流体稳定浓度的影响。期望通过提供适用于工业传热应用的长期稳定的CNT纳米流体,这项研究中获得的结果可能对CNT纳米流体的适当剪裁做出重大贡献。

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