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Effect of Titanium Dioxide Particle Size in Water-based Micro/Nanofluid as Quench Medium in Heat Treatment Process

机译:水基微/纳米流体中二氧化钛粒径的影响热处理过程中的淬火介质

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Recently, nanofluid is used to improve the thermal conductivity of the quench medium in the heat treatment industry. In this research, ball-milled micro-sized TiO2 powder and nano-sized T1O2 particle were used and compared for their cooling characteristic in a micro/nanofluid. The micro/nanofluids were produced by mixing 0.1 %, 0.3%, and 0.5% volume of both micro- and nano-sized particle into 100 ml of distilled water. The planetary ball mill was used at 500 rpm for 15 hours to reduce the dimension of micron-sized TiO2. Composition characterization by Energy Dispersive Spectroscopy (EDS) showed that the powder used were free from impurities. Nano fluids were then used to quench S45C carbon steel samples, which heated at 1000°C for 1 hour. The hardness test result showed that the sample quenched with 0.5%addition of the nano-sized particle in nano fluid had the highest number up to 691 HV, almost 100HV increment from a water-quenched sample where the hardness was 598 HV, showing that the cooling rate in the nanofluid was much higher. The addition of micro-size particle in fluid generally had a lower cooling rate than the addition of nano-size particle.
机译:最近,纳米流体用于改善热处理工业中淬火介质的导热率。在该研究中,使用球磨的微尺寸TiO2粉末和纳米大小的T1O2颗粒并比较微/纳米流体中的冷却特性。通过将0.1%,0.3%和0.5重量的微颗粒混合到100ml蒸馏水中来制备微/纳米流体。在500rpm下使用行星球磨机15小时以减少微米尺寸的TiO2的尺寸。通过能量分散光谱(EDS)的组成表征显示使用的粉末不含杂质。然后使用纳米液淬灭S45C碳钢样品,其在1000℃下加热1小时。硬度试验结果表明,用0.5%加入纳米液中的纳米粒子颗粒淬灭的样品的最高数量高达691HV,从水猝灭样品中几乎增加了100HV,其中硬度为598HV,显示出纳米流体中的冷却速率高得多。在流体中添加微尺寸颗粒通常具有比添加纳米尺寸颗粒的冷却速率较低。

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