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Stress and Strain Analysis and Microstructure of Al/Cu Clad Composite Fabricated by Cold Extrusion

机译:冷挤压Al / Cu复合材料的应力应变分析及组织

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A five-zone describing model for extrusion of aluminum/copper clad composite was established. Stress and strain were also analyzed by finite element method. The distribution rules of grain size were researched by critical shear strain theory, and zoning phenomenon of grain size was discovered. The grain size of deformed aluminum material becomes gradually finer from center to the interface. The grain size is much fine and the critical shear strain reaches the maximum value in the interface. The grain size of copper material reduces gradually from center to both the interface and exterior surface, which is caused by the higher value of critical shear strain in the interface and exterior surface. The analysis results were verified by microstructure observation and mechanical properties test, indicating that the distribution of grain size for cold extrusion forming can be interpreted by critical shear strain theory.
机译:建立了铝/铜复合复合材料挤出的五区描述模型。还通过有限元方法分析了应力和应变。利用临界剪应变理论研究了晶粒尺寸的分布规律,发现了晶粒尺寸分区现象。变形的铝材料的晶粒尺寸从中心到界面逐渐变细。晶粒非常细,临界剪切应变在界面处达到最大值。铜材料的晶粒尺寸从中心到界面和外表面都逐渐减小,这是由于界面和外表面中的临界剪切应变值较高所致。通过显微组织观察和力学性能测试验证了分析结果,表明冷挤压成形的晶粒尺寸分布可以用临界剪切应变理论来解释。

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