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Microstructural Evolution of Ultrafine-Grained Steel During Tandem Rolling Process

机译:级联轧制超细晶粒钢的组织演变

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Titanium microalloyed steel whose grain size is around 3um has been developed by CSP process. Samples after different plastic deformation were obtained by suddenly stopping the six-stand finishing train during tandem rolling. Experimental results and analysis show that plastic deformation during tandem rolling plays a major role for grain refinement. With the successive severe strain, microstructure of the same stock during tandem rolling is further refined because of repeated recrystallization at higher temperature and strain accumulation at lower temperature. Technological features of CSP process, such as large reduction per pass, rapid cooling after rolling and high solidification and of thin slab, are important reasons for obtaining ultafine-grained structure. Besides these, chemical composition of titanium microalloyed steel has beneficial effects on grain refinement.
机译:通过CSP工艺已开发出晶粒尺寸约为3um的钛微合金钢。通过在串联轧制过程中突然停止六机架精轧机列,获得了不同塑性变形后的样品。实验结果和分析表明,串连轧制过程中的塑性变形对晶粒细化起着重要作用。在连续的剧烈应变下,由于在较高温度下反复重结晶和在较低温度下的应变积累,在串联轧制过程中相同坯料的显微组织得到进一步改善。 CSP工艺的技术特点,如大通量压下,轧制后快速冷却和高凝固以及薄板坯,是获得超细晶组织的重要原因。除此之外,钛微合金钢的化学成分对晶粒细化具有有益的作用。

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