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Application of binary mixed surfactant additives in jet impingement cooling of a hot steel plate

机译:二元混合表面活性剂在热钢板喷射冲击冷却中的应用。

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The current research aims at investigating role of three different types of surfactants and their binary mixtures in producing high cooling rate during jet impingement on a hot steel plate (100 mmx100 mmx6 mm) having initial surface temperature above 900 degrees C. The surfactants used are Sodium dodecyl sulphate (anionic), cetyltrimethylammonium bromide (cationic) and Polysorbate 20 (Tween 20, non-ionic). The surface tension values of the surfactants and their mixed systems have been measured and it has been observed that the binary mixtures at specific compositions show lower surface tension compared to the pure ones mainly due to synergism. The cooling results reveal that the mixture of cationic and non-ionic surfactants produces the highest cooling rate amongst all the systems. The maximum cooling rate achieved is 182 degrees C/s for the composition of 25 vol% CTAB and 75 vol% Tween 20 and it is 67% more than that of pure water, 23% more compared to pure CTAB and and 7.7% more than that of pure Tween 20. Thus it can be seen that ultrafast cooling of a 6 mm thick steel plate can be achieved by using optimized concentrations of mixed surfactant additives and this leads to improvement of quality of steel produced.
机译:当前的研究旨在研究三种不同类型的表面活性剂及其二元混合物在初始表面温度高于900摄氏度的热钢板(100 mmx100 mmx6 mm)上进行喷射撞击期间产生高冷却速率的作用。使用的表面活性剂是钠十二烷基硫酸盐(阴离子),十六烷基三甲基溴化铵(阳离子)和聚山梨酯20(吐温20,非离子)。已经测量了表面活性剂及其混合体系的表面张力值,并且已经观察到特定组成的二元混合物与纯混合物相比具有较低的表面张力,这主要是由于协同作用。冷却结果表明,阳离子和非离子表面活性剂的混合物在所有系统中产生最高的冷却速率。对于25%(体积)的CTAB和75%(体积)的Tween 20,其最大冷却速度为182℃/ s,比纯水高67%,比纯CTAB高23%,比纯水高7.7%。因此,可以看出,通过使用最佳浓度的混合表面活性剂添加剂,可以实现6 mm厚钢板的超快冷却,这可以提高所生产钢材的质量。

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