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Formation and Mechanical Properties of Bimodal Microstructures in 0.2 Carbon Steel by Heavy-Reduction Hot Compression

机译:重还原热压缩0.2%碳钢中双峰组织的形成和力学性能

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A compression test simulating heavy-reduction single-pass rolling was conducted to investigate the compression behavior and to systematically collect basic data on the formation of bimodal structures in 0.2% carbon steel at various deformation temperatures from 700 to 850 °C. As increasing deformation temperature from 700 to 850 °C, those microstructures were considerably refined with higher fraction of high-angle grain boundaries. Particularly, there was high a probability of bimodal structures being formed in 850 °C-compressed sample having 1.4 μm Of average ferrite grain sizes. Ultimate tensile strength and average uniform elongation (UE) of this sample represented 677 MPa and 8%, respectively, which shows holding high strength and twofold improved UE compared with the other samples. Additionally, bimodal dimples with submicron-size (
机译:进行了一种压缩试验,用于研究压缩性能,以研究压缩行为,并系统地收集关于在0.2%碳钢中形成的基本数据,在0.2%碳钢中,在700-850℃的各种变形温度下。随着700至850℃的变形温度的增加,这些微结构具有更高的高角度晶界的大部分。特别地,在具有1.4μm的平均铁氧体粒径的850℃-C压缩样品中形成了具有较高的双峰结构的概率。该样品的最终拉伸强度和平均均匀伸长率(UE)分别表示677MPa和8%,其与其他样品相比,其显示高强度和双重改善的UE。另外,在在850℃下压缩的样品中的裂缝表面上观察到具有亚微米尺寸(<1μm)和细(2-4μm)凹槽的双峰凹槽。

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