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Physical and Mathematical Modeling of the Argon-Oxygen Decarburization Refining Process of Stainless Steel 被引量:5
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作者 魏季和 《Journal of Shanghai University(English Edition)》 CAS 2002年第1期1-23,共23页
The available studies in the literature on physical and mathematical modeling of the argon oxygen decarburization (AOD) process of stainless steel have briefly been reviewed. The latest advances made by the author wi... The available studies in the literature on physical and mathematical modeling of the argon oxygen decarburization (AOD) process of stainless steel have briefly been reviewed. The latest advances made by the author with his research group have been summarized. Water modeling was used to investigate the fluid flow and mixing characteristics in the bath of an 18 t AOD vessel, as well as the 'back attack' action of gas jets and its effects on the erosion and wear of the refractory lining, with sufficiently full kinematic similarity. The non rotating and rotating gas jets blown through two annular tuyeres, respectively of straight tube and spiral flat tube type, were employed in the experiments. The geometric similarity ratio between the model and its prototype (including the straight tube type tuyeres) was 1:3. The influences of the gas flow rate, the angle included between the two tuyeres and other operating parameters, and the suitability of the spiral tuyere as a practical application, were examined. These latest studies have clearly and successfully brought to light the fluid flow and mixing characteristics in the bath and the overall features of the back attack phenomena of gas jets during the blowing, and have offered a better understanding of the refining process. Besides, mathematical modeling for the refining process of stainless steel was carried out and a new mathematical model of the process was proposed and developed. The model performs the rate calculations of the refining and the mass and heat balances of the system. Also, the effects of the operating factors, including adding the slag materials, crop ends, and scrap, and alloy agents; the non isothermal conditions; the changes in the amounts of metal and slag during the refining; and other factors were all considered. The model was used to deal with and analyze the austenitic stainless steel making (including ultra low carbon steel) and was tested on data of 32 heats obtained in producing 304 grade steel in an 18 t AOD vessel. The changes in the bath composition and temperature during the refining process with time can be accurately predicted using this model. The model can provide some very useful information and a reliable basis for optimizing the process practice of the refining of stainless steel and control of the process in real time and online. 展开更多
关键词 stainless steel argon oxygen decarburization (AOD) process fluid flow and mixing back attack phenomenon non rotating and rotating gas jets DECARBURIZATION water modeling mathematical modeling.
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磁控溅射ITO薄膜结构和性能的研究 被引量:1
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作者 陈晨 杨洪星 唐文虎 《电子工业专用设备》 2014年第10期8-13,共6页
利用中频脉冲磁控溅射工艺制备ITO薄膜,研究了在衬靶间距为60 mm、衬底温度为350℃、溅射功率为120 W、溅射气压为0.2 Pa的条件下,氧氩比(O2/Ar)、溅射时间对ITO薄膜表面形貌、膜厚、沉积速率及光电性能的影响。通过实验和分析,最终确... 利用中频脉冲磁控溅射工艺制备ITO薄膜,研究了在衬靶间距为60 mm、衬底温度为350℃、溅射功率为120 W、溅射气压为0.2 Pa的条件下,氧氩比(O2/Ar)、溅射时间对ITO薄膜表面形貌、膜厚、沉积速率及光电性能的影响。通过实验和分析,最终确定了在玻璃衬底上制备ITO薄膜的最佳氧氩比和溅射时间:氧氩比为0.4:40,溅射时间为45 min,获得了方阻为2.55Ω/□,电阻率为1.46×10-4Ω·cm,可见光范围内平均透过率为81.2%的薄膜。 展开更多
关键词 ITO薄膜 氧氩比 溅射时间
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