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Spark plasma sintering of boron carbide reinforced aluminum alloy (Al6061) matrix composites

机译:碳化硼增强铝合金(Al6061)基复合材料的放电等离子体烧结。

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Lightweight aluminum matrix composites find wide applications in automobile and aerospace applications. An effort in the field of metal matrix composites is done by preparing boron carbide reinforced composites via spark plasma sintering. Three different loadings of 1wt.%, 5wt.% and 10wt.% were used to fabricate aluminum alloy composites for physical and mechanical characterization. The resulting microstructure is evaluated by optical, scanning and transmission electron microscopy. Density and electrical conductivity measurements are used to witness the effect of boron carbide in alloy matrix. Mechanical properties were evaluated by measuring hardness and compressive strength. Improvement in properties was observed owing to uniform distribution, superior compaction and sintering during optimized spark plasma processing. The strengthening mechanism has been studied and behavior of ceramic reinforcement has been discussed. Higher content of boron carbide is main reason of dislocation peening and resulting higher strength of the composite.
机译:轻质铝基复合材料在汽车和航空航天应用中得到了广泛的应用。金属基复合材料领域的努力是通过火花等离子烧结制备碳化硼增强的复合材料来完成的。使用三种不同的1wt。%,5wt。%和10wt。%的载荷来制造铝合金复合材料,以进行物理和机械表征。通过光学,扫描和透射电子显微镜评估所得的微观结构。密度和电导率测量用于证明碳化硼在合金基体中的作用。通过测量硬度和抗压强度评估机械性能。由于在优化的火花等离子处理过程中均匀分布,优异的压实性和烧结性,观察到了性能的改善。研究了增强机理,并讨论了陶瓷增强的行为。碳化硼含量较高是位错喷丸强化的主要原因,并导致复合材料具有更高的强度。

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