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Thermal and rheological properties of water-based ferrofluids and their applicability as quenching media

机译:水性铁磁流体的热和流变性能及其作为淬火介质的适用性

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Water-based ferrofluids present a new energy transfer fluid with tunable properties. Previous research has shown the increase in thermal conductivity of water-based nanofluids with the addition of iron oxide. Such increased thermal properties show great potential for use in heat transfer. In this paper, several nanofluids were prepared with two step method. Iron (II, III) oxide nanoparticles with average paerticle size less than 50 nm were added to deionized water in following concentration: 0.01, 0.1, 0.5 and 1 g/L. Their thermal and rheological properties were measured at 20, 40 and 60 °C. Results showed increase in thermal conductivity and viscosity with increase in the addition of nanoparticles at all three temperature levels. The biggest increase was observed at 20°C. For this research, all of the prepared nanofluids were tested as immersion quenching liquid according to ISO 9950 standard. Besides still conditions, quenching experiments were conducted under the magnetic field at two levels, 500 and 1000 Gauss. The magnetic field effect was least present at 60°C with almost no influence on the cooling curve and cooling rates. At lower temperature levels quenching under the magnetic field shortened the full film boiling phase and increased the maximum cooling rate.
机译:水基的铁磁流体呈现了一种新的能量转移液,可调性。以前的研究表明,加入氧化铁的水基纳米流体的导热率增加。这种增加的热性能显示出在热传递中使用的巨大潜力。在本文中,用两步法制备了几种纳米流体。在浓度下,将具有平均潜水表尺寸小于50nm的氧化铁(III)氧化物纳米颗粒在去离子水中加入去离子水中:0.01,0.1,0.5和1g / l。它们在20,40和60℃下测量其热和流变性。结果表明导热率和粘度的增加随着三个温度水平的添加纳米颗粒而增加。在20°C下观察到最大的增加。对于该研究,根据ISO 9950标准测试所有制备的纳米流体作为浸渍猝灭液。除仍然条件外,在磁场下在两个水平,500和1000高斯进行淬火实验。磁场效果在60℃的最小存在,几乎没有对冷却曲线和冷却速率的影响。在较低的温度水平下,磁场下的淬火缩短了全膜沸腾阶段并增加了最大冷却速率。

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