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MICROSTRUCTURE AND DEFORMATION RESISTANCE IN ROLLING OF ALUMINIUM FOIL

机译:铝箔轧制中的微观结构和变形性

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Transmission electron microscopic observations of technically pure Al (AA 1050) show that the grain structure approaches a steady state during foil rolling due to dynamic recovery and geometric dynamic recrystallization. It is characterized by pancake shaped subgrains of 0.45 μm thickness and an aspect ratio of 0.5 in flat grain layers of 1 μm thickness. As a result of microstructural evolution the tensile strength of the foils remains approximately constant with increasing rolling strain. The evolution of deformation resistance and microstruc-ture can be simulated with a simple model using the dislocation density as single microstructural parameter.
机译:技术纯的Al(AA 1050)的透射电子显微镜观测表明,由于动态回收和几何动态再结晶,晶粒结构在箔轧制过程中接近稳态。其特征在于0.45μm厚度为0.45μm的薄片形状,厚度为1μm厚度为0.5的纵横比。由于微观结构演变的结果,随着轧制菌株的增加,箔的拉伸强度保持近似恒定。通过使用位错密度为单个微结构参数,可以用简单的模型模拟变形电阻和微足迹的演变。

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