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Microstructural evolution and formation mechanism of bimodal structure of 0.2% carbon steel subjected to the heavy-reduction controlled rolling process

机译:大压下控制轧制0.2%碳钢双峰组织的组织演变及形成机理

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摘要

A heavy-reduction controlled rolling process with approximately 75% thickness reduction was carried out to investigate the microstructural evolution including texture development, focusing on the formation of a bimodal structure of 0.2% carbon steel with heating temperatures of 700, 800, 900, and 1000 ℃. Upon increasing the heating temperature from 700 to 900 ℃, the microstructure was refined and precipitates such as Fe_3C were uniformly distributed throughout the microstructure. For the microstructures control-rolled at heating temperatures of 900 and 1000 ℃ with average ferrite grain sizes of 1.34 and 1.63 μm, respectively, a bimodal structure could be observed by scanning electron microscopy (SEM), which was very similar to the result of a plane-strain compression (PSC) test. Moreover, the 900 and 1000 ℃-heated specimens had less well developed textures primarily consisting of {113}-{4 4 11 }<110> and {332}<113> components, which usually developed by the transformation (γ→ α), and the 1000 ℃-heated specimen exhibited various textures and a low intensity of the {100}<011> component, which was generally transformed from the {100}<001> component of the recrystallized austenite.
机译:进行了厚薄约75%的减重控制轧制工艺,以研究包括织构发展在内的微观组织演变,重点是加热温度为700、800、900和1000的0.2%碳钢双峰组织的形成。 ℃。将加热温度从700℃提高到900℃后,微结构细化,Fe_3C等析出物均匀地分布在整个微结构中。对于在900和1000℃加热温度下分别控制控制轧制,平均铁素体晶粒尺寸为1.34和1.63μm的组织,通过扫描电子显微镜(SEM)可以观察到双峰结构,这与a的结果非常相似。平面应变压缩(PSC)测试。此外,在900和1000℃加热的试样中,质地较差的织构主要由{113}-{4 4 11} <110>和{332} <113>组分组成,通常通过转变(γ→α)形成,并在1000℃加热的试样上表现出各种质地,并且{100} <011>组分的强度较低,这通常是从重结晶奥氏体的{100} <001>组分转变而来的。

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