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Controlling mechanism of ferrite grain size generated through large strain deformation of 0.15C steel

机译:0.15C钢大应变变形产生铁素体晶粒尺寸的控制机理

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During large strain deformation of materials, the width of the initial high angle grain boundaries approaches the order of mean diffusion distances encountered during elevated temperature deformation. Since the evolution of ultrafine grains is attributed to thermally activated processes, the role of interfaces in determining the grain size is significant. In order to investigate into this role, microstructure development in low carbon steel (0.15% C) subjected to large strain deformation was studied with specific reference to the controlling mechanism of ferrite grain size evolution. Plane strain compression tests have been conducted in the temperature range of 773-923K at strain rates of 0.01 s~(-1) and 1 s~(-1) and the specimens were deformed to 25% of the original thickness and the Microstructural evolution is studied. Based on the results obtained, diffusion along grain boundaries was found to be the mechanism controlling ferrite grain size in this material processed through large strain deformation.
机译:在材料的大应变变形过程中,初始大角度晶粒边界的宽度接近高温变形过程中遇到的平均扩散距离的顺序。由于超细晶粒的演化归因于热活化过程,因此界面在确定晶粒尺寸中的作用非常重要。为了研究这种作用,研究了低碳钢(0.15%C)在大应变变形下的组织发展,并特别参考了铁素体晶粒尺寸演变的控制机理。在773-923K的温度范围内,以0.01 s〜(-1)和1 s〜(-1)的应变速率进行了平面应变压缩试验,使试样变形至原始厚度的25%,并且显微组织演变为被研究。根据获得的结果,发现沿着晶界的扩散是控制这种通过大应变变形加工的材料中铁素体晶粒尺寸的机制。

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