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Investigation of Thermal Conductivity and Viscosity of Al2O3/Water-Ethylene Gylcol Mixture Nanocoolant for Cooling Channel of Hot-press Forming Die Application

机译:热压成型模具冷却通道用Al2O3 /水-乙二醇混合物纳米冷却剂的导热系数和粘度研究

摘要

Hot-press forming process is widely used to produce lightweight chassis in automotive industries. The hot-press forming process currently uses water as coolant to quench boron steels in a closed die with a cooling channel. However, to enhance performance of hot-press forming die, the fluid with better thermal properties will be used instead of normal water. This study dispersed Al2O3 nanoparticles with an average diameter of 13 nm in three volume percentages base ratios of water (W) to ethylene glycol (EG) (i.e. 60:40, 50:50, and 40:60) by two-step preparation. The two main parameters in cooling rate performance are thermal conductivity and viscosity. The nanocoolant of Al2O3/water–ethylene glycol mixture is prepared for the volume concentration range of 0.2 to 1.0%. The thermal conductivity and viscosity are then measured at temperature range of 15 to 55 °C. The highest enhancement of thermal conductivity was observed to be 10% higher than base fluid for 1.0% volume concentration at 55 °C in 60:40 (W/EG). However, the highest enhancement of viscosity was measured to be 39% for 1.0% volume concentration in 40:60 (W/EG) at 25 °C. The convective heat transfer coefficient of 1.0% concentration in 60:40 (W:EG) at 25 °C is enhanced by 25.4% better than that of 50:50 and 40:60 (W:EG) base fluid. Therefore, this study recommends the use of Al2O3 in 60:40 (W:EG) mixture with volume concentration of less than 1.0% for application in cooling channel of hot-press forming die. Nanocoolant as cooling agent with higher heat transfer coefficient compared to the base fluid can reduce the cycle time and increase the productivity of hot-press forming process.
机译:在汽车工业中,热压成型工艺被广泛用于生产轻质底盘。目前,热压成型工艺使用水作为冷却剂,在带有冷却通道的封闭式模具中淬火硼钢。但是,为了增强热压成型模具的性能,将使用具有更好热性能的流体代替普通水。这项研究通过两步制备将平均直径为13 nm的Al2O3纳米颗粒以三个体积百分比的水(W)与乙二醇(EG)的基本比率(即60:40、50:50和40:60)分散。冷却速率性能的两个主要参数是导热率和粘度。制备的Al2O3 /水-乙二醇混合物的纳米冷却剂的体积浓度范围为0.2%至1.0%。然后在15至55°C的温度范围内测量导热系数和粘度。在55°C于60:40(W / EG)下,以1.0%的体积浓度观察到,导热率的最高提高幅度比基础流体高10%。但是,在25°C下,以40:60(W / EG)的1.0%体积浓度测得的最高粘度增加为39%。与25:50和40:60(W:EG)的基础流体相比,在25°C下60:40(W:EG)浓度为1.0%的对流换热系数提高了25.4%。因此,本研究建议在体积比小于1.0%的60:40(W:EG)混合物中使用Al2O3,以用于热压成型模具的冷却通道。与基础流体相比,纳米冷却剂作为传热系数更高的冷却剂,可以减少循环时间并提高热压成型工艺的生产率。

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