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首页> 外文期刊>Journal of Materials Science >Grain boundary motion and grain growth in zinc in a high magnetic field
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Grain boundary motion and grain growth in zinc in a high magnetic field

机译:强磁场下锌的晶界运动和晶粒长大

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The motion of grain boundaries in zinc bicrystals (99.995 %) driven by the "magnetic" driving force was measured. An in situ technique for observations and continuous recording the boundary migration was applied. Planar symmetrical and asymmetrical〈1010〉tilt grain boundaries with rotation angles in the range between 60° and 90° were studied. The boundary migration was measured in the temperature regime between 330 and 415 ℃. The mobility of〈1010〉tilt boundaries in zinc and its temperature dependence were found to depend on the misorientation angle and the inclination of the boundary plane. An application of a magnetic field during the annealing of cold rolled (90 %) zinc-1.1 % aluminum alloy sheet specimens substantially affected the texture and microstructure evolution. This effect is attributed to the additional magnetic driving force for grain growth arising due to the magnetic anisotropy of zinc.
机译:测量了由“磁性”驱动力驱动的锌双晶(99.995%)中晶界的运动。应用了用于观察和连续记录边界迁移的原位技术。研究了旋转角在60°至90°之间的平面对称和不对称<1010>倾斜晶界。在330至415℃的温度范围内测量了边界迁移。发现锌中〈1010〉倾斜边界的迁移率及其温度依赖性取决于取向角和边界平面的倾斜度。在冷轧(90%)锌-1.1%铝合金薄板试样的退火过程中施加磁场会极大地影响组织和组织的演变。该效果归因于由于锌的磁各向异性而引起的用于晶粒生长的附加磁驱动力。

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