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Fabrication and characterization of squeeze cast A413-C-SF composites

机译:挤压铸造A413-C-SF复合材料的制造与表征

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摘要

A413 aluminum matrix composites reinforced with short carbon fibers (C-sFs) were produced using a combination of vortex and squeeze casting processes and the effects of reinforcement volume fraction and reinforcement coating on density, porosity, reinforcement distribution and mechanical properties of the produced composites were studied. The results showed that increasing the volume fraction of CsFs led to decreased density and increased porosity of the cast composites. Distribution of uncoated CsFs in the matrix of the reinforced samples was poor and most of the fibers were in agglomerated bundle form. Utilization of coated CsFs resulted in a rather uniform distribution of the reinforcement in the matrix. Mechanical properties of squeeze cast composites, fabricated using uncoated CsFs improved by increasing the reinforcement volume fraction up to 2% and decreased beyond it. Mechanical properties of the squeeze cast composites fabricated using coated CsFs improved steadily by increasing the reinforcement volume fraction up to 3%. Ultimate tensile strength and hardness values of the composites reinforced with 3 vol% coated CsFs increased by more than 100% and 60%, respectively, in comparison with those of the monolithic cast sample. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用涡流和挤压铸造工艺的组合生产用短碳纤维(C-SFS)加固的A413铝基基复合材料,以及加强体积分数和增强涂层对所产生的复合材料的密度,孔隙率,增强分布和机械性能的影响研究过。结果表明,增加CSF的体积分数导致铸造复合材料的密度降低和增加的孔隙率。在增强样品中的基质中未涂覆的CSF的分布差,大部分纤维均为附聚束形式。涂覆的CSF的利用导致基质中增强的相当均匀分布。挤压铸造复合材料的机械性能,通过将增强体积分数增加高达2%并减少其来改善,通过未涂覆的CSF制造。使用涂覆的CSFS制造的挤压铸件的力学性能通过将增强体积分数增加至3%而稳定地改善。与单片浇铸样品的那些相比,用3Vol%涂覆的CSF增强的复合材料的最终拉伸强度和硬度值分别增加了大于100%和60%。 (c)2017年Elsevier B.V.保留所有权利。

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