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Hidden Potential of Cold Sheet Rolling

机译:冷板滚动的隐藏潜力

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摘要

Symmetric rolling (SR) where the roll speeds are equal and rolling-drawing (RD) where the roll speed ratio is limiting are versions of general rolling (GR). An advantage of GR is in a greater number of independent control parameters than in SR and RD (three against two and one, respectively). In this regard, GR is more flexible, thus allowing rolling schedules that ensure a fuller utilization of equipment capabilities, a reduction in the number of passes or intermediate heat treatments, a reduction in the minimum possible thickness of the strip, etc. The developed mathematical model of GR, the program for optimizing the rolling schedules against various criteria, and its numerical implementation confirm these conclusions. If compared with SR, the efficiency of GR increases with increase in the friction coefficient and the diameter of the work rolls, decrease in the elastic characteristics of the rolls, expansion of the range of mill products, increase in the strength of the strip, and decrease in its thickness. When compared with RD, the situation is opposite. An analysis of the variation in the control parameters during passages shows that as the thickness of the strip increases (decreases), the rolling schedules of GR tend to those of SR (RD).
机译:辊速度等于辊速度(RD)的对称轧制(SR),其中辊速比限制是一般轧制(GR)的版本。 GR的优点在于比在SR和RD中的更大数量的独立控制参数(分别为两个和一个)。在这方面,GR更加灵活,从而允许滚动时间表确保更充分利用设备能力,降低通过或中间热处理的数量,降低条带的最小可能厚度等。发达的数学GR的模型,用于优化滚动时间表对各种标准的程序,其数值实施确认了这些结论。如果与SR相比,GR的效率随着摩擦系数的增加和工作辊的直径而增加,轧辊的弹性特性降低,轧机的膨胀范围,增加了条带的强度和减少其厚度。与RD相比,情况相反。段落期间控制参数变化的分析表明,随着条带的厚度增加(减小),GR的滚动时间表倾向于SR(RD)。

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