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Effect of Annealing Cycle on Drawability and Microstructure of Cold Rolled Steel Sheet

机译:退火周期对冷轧钢板拉伸性和微观结构的影响

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The effect of the annealing cycle on microstructure, mechanical properties and draw ability of aluminium killed steel sheets at three different heating rates and holding times were investigated. Tensile test, hardness test, optical microscope and transmission electron microscope (TEM) techniques were utilized. The results of samples for different times in laboratory experiments were compared with the production samples. The results for these experiments showed that lower heating rates (12 °C/h) occurred at a lower annealing temperature, increase draw ability. This effect is attributable to the longer time available to initiate nucleation at the lowest heating rate. However, for all three heating rates (12 °C/h, 24 °C/h and 36 °C/h), the aluminium and nitrogen combine to form atmospheres or pre-precipitation clusters at polygonised sub-grains and as rolled boundaries, modifying the development of the recrystallized structure. Different amounts of A1N were precipitated prior to recrystallization for each heating rate resulting in different final recrystallized grain sizes, mechanical properties and drawabilities. The heating rate strongly influences recrystallization and drawability with a lower heating rate reducing both the temperature of the start of recrystallization and the recrystallized grain size. It is inferred that the lower rate promotes nucleation of recrystallization overgrowth of recrystallized. The effect of holding time on mechanical properties was to: (i) decrease tensile strength, yield strength and hardness and (ii) increase drawability, elongation and grain size. Tensile strength and hardness results from laboratory experiments were lower than those for production samples, but the trends were similar.
机译:研究了退火周期对三种不同加热速率和保持时间铝杀死钢板的微观结构,机械性能和汲取能力的影响。使用拉伸试验,硬度试验,光学显微镜和透射电子显微镜(TEM)技术。将在实验室实验中不同时间的样品结果与生产样品进行比较。这些实验的结果表明,较低的加热速率(12℃/ h)发生在较低的退火温度下,提高吸引力。这种效果可归因于可用于以最低加热速率启动成核的较长时间。然而,对于所有三个加热速率(12℃/ h,24℃/ h和36℃),铝和氮结合在多个副粒子和轧制边界处形成大气或预析出簇,改变重结晶结构的发展。在重结晶前沉淀出不同量的A1N,针对每个加热速率重结晶,得到不同的最终再结晶晶粒尺寸,机械性能和拉伸性。加热速率强烈影响重结晶和拉伸性,其加热速率降低了重结晶开始的温度和再结晶的晶粒尺寸。推断较低的速率促进重结晶过重结晶的重结晶过度核化的成核。保持时间对机械性能的影响是:(i)降低拉伸强度,屈服强度和硬度和(ii)增加拉伸性,伸长率和晶粒尺寸。实验室实验的拉伸强度和硬度低于生产样品的强度,但趋势是相似的。

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