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Effect of thermomechanical processing on the microstructure of Si-Mn TRIP steel

机译:热机械加工对Si-Mn TRIP钢组织的影响

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High strength and ductility of the transformation-induced plasticity (TRIP) steels are attributed to straininduced martensitic transformation of the retained austenite in the multiphase microstructure (ferrite and bainite). Thermomechanical processing (TMP) was performed on Si-Mn bulk TRIP steel using a computer controlled torsion machine with different rolling schedules, by varying the deformation in the austenitic recrystallization region and non recrystallization region, as well as the isothermal hold temperature for ferrite transformation. It was found that the choice of applied strain and temperature of deformation prior to transformation had a strong impact on transformation kinetics, final multiphase (ferrite, bainite and retained austenite) structure characteristics and mechanical properties of TRIP steel. The volume fraction of retained austenite was measured by both X-ray diffraction and image analysis method. The retained austenite volume fraction varied with strain in the non-recrystallization region. The increase of percentage reduction in the nonrecrystallization region results in a greater amount of elongated austenite grains and deformation bands in the interior of the grains consequently very fine ferrite structures were formed. Furthermore, the dynamically recrystallized austenite structure tends to retain more austenite at room temperature.
机译:相变诱导塑性(TRIP)钢的高强度和延展性归因于多相组织(铁素体和贝氏体)中残余奥氏体的应变诱导马氏体相变。使用计算机控制的扭转机,通过改变奥氏体再结晶区和非再结晶区的变形以及用于铁素体转变的等温保持温度,使用计算机控制的扭转机对Si-Mn块体TRIP钢进行热机械加工(TMP)。结果发现,选择相变前施加的应变和变形温度对TRIP钢的相变动力学,最终多相(铁素体,贝氏体和残余奥氏体)组织特性和力学性能有很大影响。通过X射线衍射和图像分析方法测量残留奥氏体的体积分数。在非再结晶区中,残余奥氏体体积分数随应变而变化。非再结晶区域中减少百分率的增加导致大量的拉长奥氏体晶粒和晶粒内部的形变带,因此形成了非常细的铁素体结构。此外,动态再结晶的奥氏体组织在室温下倾向于保留更多的奥氏体。

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