Kim Suyeon, Kang Seongeun, Lee Joohyung
Department of Chemical Engineering, Myongji University, 116 Myongji-ro, Cheoin-gu, Yongin, Gyeonggi-do 17058, Korea.
ACS Omega. 2023 May 9;8(20):17748-17757. doi: 10.1021/acsomega.3c00487. eCollection 2023 May 23.
Colloidal suspensions of thermally conductive particles in a carrier fluid are considered promising heat transfer fluids for various thermal energy transfer applications, such as transportation, plants, electronics, and renewable energy systems. The thermal conductivity () of the particle-suspended fluids can be improved substantially by increasing the concentration of conductive particles above a "thermal percolation threshold," which is limited because of the vitrification of the resulting fluid at the high particle loadings. In this study, eutectic Ga-In liquid metal (LM) was employed as a soft high- filler dispersed as microdroplets at high loadings in paraffin oil (as a carrier fluid) to produce an emulsion-type heat transfer fluid with the combined advantages of high thermal conductivity and high fluidity. Two types of the LM-in-oil emulsions, which were produced via the probe-sonication and rotor-stator homogenization (RSH) methods, demonstrated significant improvements in , i.e., Δ ∼409 and ∼261%, respectively, at the maximum investigated LM loading of 50 vol % (∼89 wt %), attributed to the enhanced heat transport via high- LM fillers above the percolation threshold. Despite the high filler loading, the RSH-produced emulsion retained remarkably high fluidity, with a relatively low viscosity increase and no yield stress, demonstrating its potential as a circulatable heat transfer fluid.
载液中导热颗粒的胶体悬浮液被认为是用于各种热能传递应用(如运输、工厂、电子和可再生能源系统)的有前景的传热流体。通过将导电颗粒的浓度提高到“热渗滤阈值”以上,可以显著提高颗粒悬浮液的热导率(),但由于在高颗粒负载下所得流体的玻璃化,这一提高受到限制。在本研究中,共晶镓铟液态金属(LM)被用作软高填料,以微滴形式高负载分散在石蜡油(作为载液)中,以制备具有高导热率和高流动性综合优势的乳液型传热流体。通过探针超声和转子-定子均质化(RSH)方法制备的两种油包LM乳液,在最大研究LM负载量为50体积%(约89重量%)时,热导率有显著提高,即分别提高了约409%和约261%,这归因于高于渗滤阈值的高LM填料增强了热传递。尽管填料负载量高,但RSH制备的乳液仍保持了非常高的流动性,粘度增加相对较低且没有屈服应力,证明了其作为可循环传热流体的潜力。