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Hot-Deformation Behavior and Microstructure Evolution of the Dual-Scale SiCp/A356 Composites Based on Optimal Hot-Processing Parameters

机译:基于最佳热加工参数的双尺度SiCp / A356复合材料的热变形行为和组织演变

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摘要

Hot deformation at elevated temperature is essential to densify particle-reinforced aluminum matrix composites (AMCs) and improve their performance. However, hot deformation behavior of the AMCs is sensitive to the variation of hot-processing parameters. In this paper, optimal processing parameters of dual-scale SiCp/A356 composites were determined to explore the control strategy of the microstructure. Hot-compression tests were conducted at temperatures ranging from 460 to 520 °C under strain rates from 0.01 to 5 s . Constitutive equation and processing maps were presented to determine the hot-processing parameters. Microstructure evolution of the dual-scale SiCp/A356 composites was analyzed. The strain rate of 0.62–5 s and deformation temperature of 495–518 °C is suitable for the hot processing. The number of dynamic recrystallization (DRX) grains in the “safe” domains is larger and the dislocation density is lower compared to those of instability domains. DRX grains mainly occurred around SiC particles. The presence of SiC particles can promote effectively the DRX nucleation, which results in the dynamic softening mechanism of the dual-scale SiCp/A356 composites being dominated by DRX.
机译:高温下的热变形对于压实颗粒增强的铝基复合材料(AMC)和改善其性能至关重要。但是,AMC的热变形行为对热加工参数的变化很敏感。本文确定了双尺度SiCp / A356复合材料的最佳加工参数,以探索微结构的控制策略。在460至520°C的温度下,0.01至5 s的应变速率下进行热压测试。给出了本构方程和加工图,以确定热加工参数。分析了双尺度SiCp / A356复合材料的微观结构演变。 0.62–5 s的应变速率和495–518°C的变形温度适用于热加工。与不稳定区域相比,“安全”区域中的动态再结晶(DRX)晶粒数量更多,而位错密度则更低。 DRX晶粒主要出现在SiC颗粒周围。 SiC颗粒的存在可以有效地促进DRX形核,从而导致DRX主导的双尺度SiCp / A356复合材料的动态软化机理。

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