Influence study of manufacturing constraints and percentage of reinforcement on copper - fly ash composite by full factorial design

P. Balamurugan, M. Uthayakumar
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Abstract

Copper-based composites play a vital role in the structural, automobile and aerospace applications. In the present study composites with varying fly ash reinforcement of 0%, 2.5%, 5%, 7.5% and 10% are prepared by powder metallurgy route. The influence of manufacturing constraints such as sintering temperature, compaction pressure and sintering time along with the reinforcement percentage on copper matrix composite is studied using full factorial design. Fly ash is used as the reinforcement. The output parameters studied are relative density, hardness and compressive strength. Contributions of each input parameters on output responses are found out. The results show that compaction pressure contributes more for the relative density with the highest contribution of 60.21%, while for the hardness and compression strength, the influence of percentage reinforcement made the highest contribution with 85.5% and 51.94%.
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用全因子设计研究了制造约束和增强率对铜-粉煤灰复合材料的影响
铜基复合材料在结构、汽车和航空航天领域发挥着至关重要的作用。采用粉末冶金方法制备了粉煤灰增强率分别为0%、2.5%、5%、7.5%和10%的复合材料。采用全因子设计研究了烧结温度、压实压力和烧结时间等制造约束条件以及增强率对铜基复合材料的影响。采用粉煤灰作为加固材料。研究的输出参数为相对密度、硬度和抗压强度。找出了各输入参数对输出响应的贡献。结果表明:压实压力对相对密度的影响最大,贡献率为60.21%;配筋率对硬度和抗压强度的影响最大,分别为85.5%和51.94%;
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