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Development of bulk ultrafine grained Al-SiC nano composite sheets by a SPD based hybrid process: Experimental and theoretical studies

机译:基于SPD的混合工艺开发块状超细晶粒Al-SiC纳米复合板:实验和理论研究

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摘要

In the present work, a hybrid manufacturing route, combining stir casting with cryorolling, is proposed for production of Ultrafine grained (UFG) nano composite sheets using an Al 1050 matrix in combination with beta-SiC particles (0.5 wt%, 1 wt%, 2 wt%). The method provides the scope for generating UFG microstructures with homogeneous distributions of nano particles that are difficult to achieve with existing manufacturing routes. The influence of the nano SiC reinforcement on the mechanical properties of the UFG nano composites were studied with an emphasis on the characterization of the microstructure. The results show that with an increasing content of reinforcement, the degree of grain refinement and strength of the UFG nano composite increases while the ductility reduces. The microstructural information and the obtained yield strengths of the UFG nano composites were validated with a mathematical model. For this, an existing dislocation density based model was modified to account for the effect of nano reinforcement and processing parameters.
机译:在当前工作中,提出了一种混合制造路线,将搅拌铸造与低温轧制相结合,用于使用Al 1050基体与β-SiC颗粒(0.5 wt%,1 wt%, 2重量%)。该方法提供了产生具有均匀分布的纳米颗粒的UFG微结构的范围,这是现有制造路线难以实现的。研究了纳米SiC增强对UFG纳米复合材料力学性能的影响,重点是微观结构的表征。结果表明,随着增强剂含量的增加,UFG纳米复合材料的晶粒细化程度和强度增加,而塑性降低。用数学模型验证了UFG纳米复合材料的微观结构信息和获得的屈服强度。为此,对现有的基于位错密度的模型进行了修改,以考虑纳米增强和加工参数的影响。

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