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Influence of Controlled Rolling and Cooling Process on the Mechanical Properties of Low Carbon Cold Forging Steel

机译:控制轧制和冷却工艺对低碳冷锻钢力学性能的影响

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In the present paper, controlled rolling and cooling processing was conducted by using a laboratory hot rolling mill. The influence of different processing parameters on the mechanical properties of low carbon cold forging steel was investigated. The results show that the faster cooling after the deformation (especially in low temperature rolling conditions) leads to the refinement of the ferrite grain. The specimen exhibits very good mechanical properties owing to the finer ferrite grains. The pearlite morphologies can also affect the mechanical properties of low carbon cold forging steel. The mechanical properties increase with decreasing final cooling temperature within the range from 650℃ to 570 ℃ due to the finer interlamellar spacing of pearlite colony. The mechanical properties of the specimens with fast cooling after the conventional rolling are not only better than those of the specimens with slow cooling after low temperature rolling, but also almost similar to those of the specimens with fast cooling after low temperature rolling. It is suggested that fast cooling after high temperature rolling (the conventional rolling) process would be of important industrial value.
机译:在本文中,通过使用实验室热轧机进行受控的轧制和冷却处理。研究了不同工艺参数对低碳冷锻钢力学性能的影响。结果表明,变形后(尤其是在低温轧制条件下)变形后的更快冷却导致铁素体晶粒的细化。由于具有较细的铁素体晶粒,因此样品具有非常好的机械性能。珠光体的形态也会影响低碳冷锻钢的机械性能。在650℃至570℃范围内,随着最终冷却温度的降低,机械性能增强,这是由于珠光体菌落的层间间距较小。传统轧制后快速冷却的试样的力学性能不仅优于低温轧制后缓慢冷却的试样的力学性能,而且几乎与低温轧制后快速冷却的试样的力学性能相似。建议高温轧制(常规轧制)后的快速冷却将具有重要的工业价值。

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