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Effects of Austenitizing Temperature and Cooling Rate on the Phase Transformation Texture in Hot Rolled Steels

机译:奥氏体温度和冷却速率对热轧钢相变纹理的影响

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The effects of austenitizing temperature and cooling rate on the microstructures and textures produced by phase transformations in high strength hot rolled Fe-C-Mn steel plates are investigated using orientation imagining microscopy. Samples machined from the plates are austenitized at temperatures between 820-950°C during 30 minutes and quenched in either iced-water, water or oil. Finally, the quenched samples are tempered at 450°C during 30 minutes. Characterization of microstructure and textures produced by these heat treatments was performed by conventional metallography using a reflected light microscope and orientation imaging microscopy using backscattered-electron diffraction patterns in a scanning electron microscope with thermo-ionic electron source. The results show that the microstructure and texture produced under a given combination of austenitizing temperature and cooling rate are strongly dependent on the mechanism involved in the phase transformation of the austenite (γ). High austenitizing temperatures and cooling rates promote martensitic transformation and development of textures containing significant volume fractions of Br, Cu, transformed-Cu and transformed-Br orientation components. In this case, the austenite and martensite phases are clearly related through the Kurdjumov-Sachs orientation relationship. In contrast, low temperatures and low cooling rates result in a complex mixture of transformation products, such as polygonal ferrite, Widmanstaten ferrite, martensite, bainite and pearlite. The textures formed under these conditions are quite different and contain significant volume fractions of cube, rotated-cube, Goss and rotated-Goss components, following the Bain orientation relationship.
机译:奥氏体化温度和冷却速率对高强度热轧Fe-C-Mn钢板中的相变和纹理的微观结构和纹理的影响进行了研究,使用定向鉴定显微镜检查。在30分钟内,从平板加工的样品在820-950℃的温度下允许审核,并在冰水,水或油中淬灭。最后,在30分钟内在450℃下淬火样品在450℃下进行回火。使用反射的光显微镜和取向成像显微镜在具有热离子电子源的扫描电子显微镜中使用反向散射 - 电子衍射图来进行这些热处理产生的微观结构和纹理的表征。结果表明,在给定的奥氏体化温度和冷却速率下产生的微观结构和质地强烈依赖于奥氏体(γ)的相变涉及的机制。高奥氏体化温度和冷却速率促进了马氏体转化和纹理的发育,含有大规模分数的Br,Cu,转化-Cu和转化-Br定向组分。在这种情况下,奥氏体和马氏体阶段通过Kurdjumov-Sachs取向关系显然有关。相反,低温和低冷却速率导致转化产物的复杂混合物,如多晶硅纹,Widmanstaten铁氧体,马氏体,贝氏体和珠光体。在这些条件下形成的纹理是完全不同的,并且在贝恩取向关系之后,立方体,旋转立方体,高空和旋转高空组件的显着体积分数。

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