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Intercritical Annealing Behaviour of an Ultrafine Grained C-Mn Steel Obtained by Hot Torsion Deformation

机译:通过热扭转变形获得超细晶粒C-Mn钢的跨临界退火行为

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Several studies concerning ferrite grain refinement have been developed in recent the last years due to the recognised influence of such microstructures on steels properties. This work was focused on the evaluation of the microstructure and mechanical properties of an ultrafine grained C-Mn steel obtained by hot torsion deformation and intercritical annealing. After 5 min soaking at 900 and 1200°C, the samples of low carbon steel were quenched and then reheated. Hot torsion deformation was conducted at temperatures of 700 or 740°C. The torsion schedule consisted of 7 isothermal passes leading to a total true strain of≈1 and generating an ultrafine and inhomogeneous microstructure with grain sizes of the order of 1μm, formed by strain-induced dynamic transformation (SIDT). The samples were heated up to 800°C and held for 1, 2 and 3 h. A more homogeneous microstructure and ferrite grain size were obtained after annealing The microhardness tests showed the reduction in hardness with the increase in annealing time. They also highlighted the effects of the ferrite grain size and the volume fractions of the microstructure constituents.
机译:近年来,近年来已经开发了几项关于铁氧体晶粒细化的研究,因为这种微观结构对钢属性的公认影响。该作品的重点是评价通过热扭转变形和跨临界退火获得的超细晶粒C-Mn钢的微观结构和机械性能。在900和1200℃下浸泡5分钟后,淬灭低碳钢的样品,然后再加热。在700或740℃的温度下进行热扭转变形。扭转时间表由7个等温通过,其导致总真正应变的〜1的总体应变,通过应变诱导的动态变换(SIDT)形成的1μm的晶粒尺寸的超细和非均匀微观结构。将样品加热至800℃并保持1,2和3小时。在退火后,获得了更均匀的微观结构和铁氧体粒度,显微硬度试验表明硬度的降低随着退火时间的增加而降低。它们还强调了铁氧体晶粒尺寸和微观结构成分的体积分数的影响。

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