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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Plastic Deformation Behavior and Microstructural Evolution of Al-Core/Cu-Sheath Composites in Multi-pass Caliber Rolling
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Plastic Deformation Behavior and Microstructural Evolution of Al-Core/Cu-Sheath Composites in Multi-pass Caliber Rolling

机译:Al-Core / Cu-鞘复合材料在多道次口径轧制中的塑性变形行为和组织演变

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Plastic deformation behavior and microstructural evolution of an Al-core/Cu-sheath composite during multi-pass caliber rolling are investigated using the finite element simulations and experimental analyses. The simulated equivalent plastic strains generated by 1 to 7 pass caliber rolling are correlated with the hardness values and microstructures measured in the longitudinal cross sections of the specimens. The average strains developed in the Al-core and Cu-sheath are almost identical, which satisfy the quasi-isostrain condition in composites with inner soft and outer hard materials. Both the Al-core and Cu-sheath exhibit increasing hardness, but decreasing hardening rates with an increase in the number of passes. The increasing hardness with an increase in the number of caliber rolling passes is attributable to the combined effect of increased dislocation density and decreased grain size. The simulated results for the hardness were shown to be in good agreement with the experimental data for Cu and Al. It was concluded that the finite element method is well placed as a tool for describing and predicting deformation behaviors during caliber rolling.
机译:利用有限元模拟和实验分析方法研究了铝芯/铜皮复合材料在多道次口径轧制过程中的塑性变形行为和组织演变。通过1到7次口径轧制产生的模拟等效塑性应变与在试样纵向截面中测得的硬度值和微观结构相关。在铝芯和铜皮中产生的平均应变几乎相同,满足具有内部软材料和外部硬材料的复合材料的准等应变条件。铝芯和铜护套都显示出增加的硬度,但是随着通过次数的增加,硬化速率降低。硬度随着口径轧制次数的增加而增加,归因于位错密度增加和晶粒尺寸减小的综合作用。结果表明,硬度的模拟结果与Cu和Al的实验数据吻合良好。得出的结论是,有限元方法作为描述和预测口径轧制过程中变形行为的良好工具。

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