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RECRYSTALLIZATION STUDY OF A LOW CARBON STEEL AFTER TENSILE STRAIN

机译:拉伸后低碳钢的再结晶研究

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摘要

Recrystallization and texture formation mechanisms of a low carbon steel have been studied by neutron diffraction, Electron Back Scattered Diffraction (EBSD) and Transmission Electron Microscopy (TEM) after 10% tensile strain. EBSD allowed us to characterise the first recrystallization steps, it appears that the recrystallized grains of the γ fibre seem to develop by SIBM (Strain Induced Boundary Migration). Moreover, the study of the local orientation of grains, which are consumed during recrystallization, has shown that these grains belong to the a fibre and to the "random" part of the texture. Deformed and recovered microstractures have also been studied by TEM to understand what are the parameters at the origin of grain boundary displacement.
机译:通过中子衍射,10%拉伸应变后的电子背散射衍射(EBSD)和透射电子显微镜(TEM)研究了低碳钢的再结晶和织构形成机理。 EBSD使我们能够表征第一个重结晶步骤,看来γ纤维的重结晶晶粒似乎由SIBM(应变诱导边界迁移)形成。此外,对在再结晶过程中消耗的晶粒局部取向的研究表明,这些晶粒属于纤维,属于纹理的“随机”部分。 TEM还研究了变形和恢复的微结构,以了解晶界位移起点处的参数。

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