首页> 外文会议>Joint International Conference on Recrystallization and Grain Growth(ReX amp; GG2,SF2M) pt.1; 20040830-0903; Annecy(FR) >Microstructure and Texture Development during Recrystallization of Rolled Molybdenum Sheets
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Microstructure and Texture Development during Recrystallization of Rolled Molybdenum Sheets

机译:轧钼板再结晶过程中的显微组织和织构发展

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Recrystallization is an important tool to adjust the grain size and texture of polycrystalline materials in order to optimize their properties. In the present work recrystallization and the related changes of texture have been studied on rolled molybdenum sheets as a function of temperature and time. The microstructure was investigated by orientation contrast in a scanning electron microscope. The kinetics of recrystallization displayed in a JMAK plot yields Avrami coefficients decreasing with temperature from 2.5 to 1.1. The activation energy amounts to 5 eV, which agrees well with the volume self-diffusion coefficient. The textures of the sheet surface and central layer were measured by X-ray diffraction. The rolling texture in the centre of the sheets is characterized by a strong α-fibre with the rotated cube component {100}< 110 > dominating. Besides that, there exists a weak γ-fibre. In contrast, the surface layer is characterized by a weak cube component. During recrystallization changes in texture are insignificant. With long annealing times all texture components tend to degrade. Conclusions regarding the deep-drawability are drawn.
机译:重结晶是调节多晶材料的晶粒尺寸和织构以优化其性能的重要工具。在目前的工作中,已经研究了轧制钼片上随温度和时间变化的重结晶和相关的组织变化。通过在扫描电子显微镜中的取向对比研究了微观结构。在JMAK图中显示的重结晶动力学产生了Avrami系数,其温度从2.5降低到1.1。活化能为5 eV,与体积自扩散系数非常吻合。通过X射线衍射测量片材表面和中心层的织构。片材中央的滚动纹理的特征在于坚固的α纤维,其中旋转的立方分量{100} <110>占主导。除此之外,还存在弱的γ纤维。相反,表面层的特征在于弱的立方组分。在再结晶过程中,织构的变化微不足道。退火时间长时,所有纹理成分都趋于退化。得出有关深冲性的结论。

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