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Estimating the resistance to deformation of the layer of scale during hot rolling of carbon steel strips

机译:估算碳钢带热轧过程中氧化皮层的抗变形能力

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Low carbon steel strips were hot rolled at various temperatures, speeds and reductions. The thickness of the layer of scale before and after the rolling pass was carefully controlled. Pre-heated oxygen-free nitrogen was used to purge the heating furnace while the strips to be rolled were brought to the test temperature. As well, after the rolling pass the strips were cooled in a closed box, which was also purged using oxygen-free nitrogen. The roll forces, roll torques, the forward slip and the scale thickness, before and after rolling, were measured. The coefficient of friction, calculated using Geleji's formula, was found to decrease as the scale thickness increased. The thickness of the oxide layer before and after rolling and the duration of the pass were used to calculate the strains and strain rates it experienced. These, along with the surface temperature, were related to the interfacial pressure and hence, to the resistance of the scale layer to deformation. The strength of the scale increased with increasing contact times and with decreasing temperatures.
机译:低碳钢带在各种温度,速度和压下率下进行热轧。仔细控制轧制前后的氧化皮层的厚度。使用预热的无氧氮气吹扫加热炉,同时将要轧制的钢带加热到测试温度。同样,在轧制道次之后,将带材在密闭箱中冷却,密闭箱也使用无氧氮气吹扫。测量轧制前后的轧制力,轧制转矩,前滑和标尺厚度。发现使用Geleji公式计算的摩擦系数会随着氧化皮厚度的增加而降低。轧制前后的氧化层厚度和道次的持续时间可用于计算所经历的应变和应变率。这些以及表面温度与界面压力有关,因此与氧化皮层的抗变形能力有关。秤的强度随着接触时间的增加和温度的降低而增加。

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