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Influences of Interfaces on Dynamic Recrystallization and Texture Evolution During Hot Rolling of Graphene Nanoribbon/Cu Composite

机译:界面对石墨烯纳米卷/ Cu复合材料热轧动态再结晶和纹理演化的影响

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摘要

The influences of rigid heterointerfaces on the dynamic recrystallization (DRX) process and texture evolution during hot rolling of a graphene nanoribbon (GNR)-reinforced Cu-matrix composite system are investigated. The Cu/GNR interfaces contribute to the atypical recrystallization-type and brass-type textures developed in composites within 0.5 and 3vol pct GNRs, respectively, deviating from the normal Cu-type texture found in their pure Cu counterpart. The heterointerfaces may change the texture evolution of the Cu matrix in four ways, namely, retard the dislocation cross slip, activate partial slip, generate geometrically necessary dislocations, and promote the DRX process. These are corroborated through viscoplastic self-consistent simulations, which well reproduce the texture development in all samples by considering the interface-dislocation interactions, the activation of non-normal slip, and the interface-driven DRX nucleation. This study suggests the possibility of manipulating the microstructure, texture, and mechanical properties of traditional metallic materials through the design of heterophase interfaces.
机译:研究了研究石墨烯纳米(GNR) - 重新轧制 - 重铬式Cu - 基质复合体系的热轧期间动态再结晶(DRX)工艺和纹理演化的影响。 Cu / GNR接口分别有助于在0.5和3VOL PCT GNR中的复合材料中产生的非典型再结晶型和黄铜型纹理,其偏离其纯Cu对应物中的正常Cu型纹理。异椰菜可以以四种方式改变Cu基质的纹理演化,即延缓位错交叉滑移,激活部分滑移,产生几何脱离,并促进DRX过程。这些通过粘性自我一致的模拟证实,通过考虑界面 - 位错相互作用,非正常滑移的激活以及接口驱动的DRX成核来良好地再现所有样品中的纹理发展。本研究表明,通过杂相界面的设计来操纵传统金属材料的微观结构,质地和机械性能。

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