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首页> 外文期刊>Materials Science and Engineering >Texture evolution of cold rolled and annealed Fe-24Mn-3Al-2Si-1Ni-0.06C TWIP steel
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Texture evolution of cold rolled and annealed Fe-24Mn-3Al-2Si-1Ni-0.06C TWIP steel

机译:Fe-24Mn-3Al-2Si-1Ni-0.06C TWIP冷轧退火退火组织的演变

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摘要

The microstructure and texture evolution of 42% cold-rolled Fe-24Mn-3Al-2Si-lNi-0.06C TWinning Induced Plasticity (TWIP) steel is investigated during isochronal annealing at temperatures between 600 and 850 ℃. In the cold rolled condition, bulk texture returned the distinctive ct-fibre for low stacking fault energy materials, with higher intensities for Goss({l12}<011)) compared to Brass ({111}(112)). A comparison between bulk and micro-textures, showed a significant slip contribution to the development of the Brass orientation, along with a possible role for micro-shear banding. Annealing twins contribute to recrystallisation from the early stages of nucleation and participate in generating new orientations thereafter. Unlike texture studies on other austenitic steels, the F ({111}(011)) and Rotated Copper ({112}(011)) orientations were detected in this work. The former is due to a more homogeneous distribution of nucleation sites, while the latter can be ascribed to second order twinning and the preferred-growth 30° (111) relation with the Brass rolling component. Based on the microstructural parameters from Electron Back-Scattering Diffraction (EBSD), the modified Hall-Petch (H-P) relation was successfully applied to the 0.2% proof stress.
机译:研究了42%冷轧的Fe-24Mn-3Al-2Si-1Ni-0.06C双相诱导塑性(TWIP)钢在600至850℃等温退火过程中的组织和织构演变。在冷轧条件下,块状织构返回了独特的ct纤维,用于低堆垛层错能材料,与黄铜({111}(112))相比,戈斯({l12} <011))的强度更高。对比松散纹理和微纹理,显示了对黄铜取向发展的显着滑移贡献,以及微剪切带的可能作用。退火孪晶从成核的早期阶段就有助于重结晶,并在此后参与产生新的取向。与其他奥氏体钢的织构研究不同,在这项工作中检测到​​了F({111}(011))和旋转铜({112}(011))取向。前者是由于成核位点分布更均匀,而后者则可归因于二阶孪晶以及与黄铜轧制组分的优选生长30°(1​​11)关系。基于电子反向散射衍射(EBSD)的微观结构参数,修改后的Hall-Petch(H-P)关系成功应用于0.2%屈服极限应力。

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