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Improvement in Galvanising Line Productivity through Annealing Simulation

机译:通过退火模拟改进镀锌线生产力

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The continuous annealing section of five decades old galvanizing lines at Rourkela Steel Plant, consists of flame heating, reduction cum annealing and controlled cooling furnaces. Due to deterioration of flame heating furnace burners, the strip could be preheated to 150 deg C instead of 450 deg C. Moreover, the temperature in reduction cum annealing furnace rarely went above 820 deg C. Inadequate heating was considered a deterrent for higher processing speed, while achieving the strip hardness below 65 HRB. Continuous annealing simulation was conducted in Gleeble-3500 to obtain desired strip property at different temperature and speed conditions. The difference between the strip soaking and furnace temperature was determined. Based on this study, plant trials at higher speeds and modified furnace temperature were conducted. Hardness and microstructure of finished product established the feasibility of higher speeds. The galvanizing line speed has increased by 16 percent for 0.5 and 0.63mm thick strip, the major production.
机译:Rourkela钢铁厂的五十年旧电镀线的连续退火截面包括火焰加热,减少暨退火和控制的冷却炉。由于火焰加热炉燃烧器的劣化,所述条带可被预热至150摄氏度,而不是450℃。此外,在还原暨退火炉的温度很少超过820去摄氏度加热不足被认为是较高的处理速度的威慑,同时在65 HRB以下实现条带硬度。在GLEEBLE-3500中进行连续退火模拟,以在不同的温度和速度条件下获得所需的条带性能。测定条带浸泡和炉温之间的差异。基于该研究,进行了较高速度和改性炉温的植物试验。成品的硬度和微观结构建立了更高速度的可行性。镀锌线速度增加了16%,0.5和0.63mm厚的条带,主要生产。

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