Deformation stability of Al 7075/20%SiCp (63µm) composites during hot compression

M. Rajamuthamilselvan, S. Ramanathan, S. Krishnamohan
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引用次数: 7

Abstract

Stir cast Al 7075/20%SiCp composites were subjected to compression testing at strain rates and temperatures ranging from 0.001 to 1.0 s-1 and from 300 to 500°C respectively. The associated microstructural transformations and instability phenomena were studied by observations of the optical electron microscope. The power dissipation efficiency and instability parameter were calculated by using the dynamic material model and plotted with the temperature and logarithm of strain rate to obtain processing maps for strains of 0.5. The domain of higher efficiencies corresponds to dynamic recrystallization during the hot deformation. Using the processing maps, the optimum processing parameters can be identified for effective hot deformation of Al 7075/20%SiCp composites.
Al 7075/20%SiCp(63µm)复合材料热压缩变形稳定性
对搅拌铸造Al 7075/20%SiCp复合材料进行了应变速率为0.001 ~ 1.0 s-1、温度为300 ~ 500℃的压缩试验。通过光学电子显微镜观察了相关的显微组织转变和不稳定现象。采用动态材料模型计算了功率耗散效率和失稳参数,并用温度和应变率对数进行了绘图,得到应变为0.5时的加工图。在热变形过程中,效率较高的区域对应于动态再结晶。利用加工图,确定了Al 7075/20%SiCp复合材料有效热变形的最佳工艺参数。
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