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An examination of the accumulative roll-bonding process

机译:检查累积的压焊工艺

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Ultra-low-carbon steel strips containing 0.002 percent C were rolled at 500 deg C, following the steps of the accumulative roll-bonding process. Strips of 32 layers were created. The mechanical attributes after rolling and cooling were examined and the development of edge cracking was monitored. The metal's yield and tensile strengths increased by 200-300 percent while the ductility dropped from a pre-rolled value of 75 to 4 percent. The rolling process was stopped when cracking of the edges became pronounced. The shear strength of the bond was about 60 percent of the yield strength in shear. The accumulation of the retained strain after dynamic recovery caused cracking at the edges. A potential industrial application of the accumulative roll-bonding process, that of the creation of tailored blanks, is discussed.
机译:遵循累积轧制工艺步骤,将含有0.002%C的超低碳钢带在500℃下轧制。创建了32层带。检查轧制和冷却后的机械性能,并监测边缘裂纹的发展。这种金属的屈服强度和抗拉强度提高了200-300%,而延展性则从预轧后的75%降至4%。当边缘的裂纹变得明显时,停止轧制过程。粘结的剪切强度约为剪切屈服强度的60%。动态恢复后保留应变的积累导致边缘开裂。讨论了累积的辊压结合工艺的潜在工业应用,即定制的毛坯的制造。

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