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Multi response optimization of sintering parameters of nano copper oxide reinforced Metal Matrix composites

机译:纳米氧化铜增强金属基复合材料烧结参数的多响应优化

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The application of nano-sized particles is increasing since it strengthens the Metal Matrix composites (MMC) and maintains the ductility of the matrix alloy. The present investigation deals optimization of sintering parameters of hybrid aluminum matrix reinforced with micro SiC particles, and nano copper oxide (CuO) particles. Experiments have been performed under different conditions of temperature, nano CuO content, and compacting pressure. Powder mixtures were compacted at a pressure ranging from 55 to 65 N/m2. The green compacts were sintered at temperatures between 550 and 600°C. Full factorial design was used to investigate the sintering process parameters. Optimization was carried out using response surface modeling based desirability analysis. Experimental results indicate that multi-response characteristics such as Tensile strength, density and micro hardness can be improved effectively through desirability analysis.
机译:纳米级颗粒的应用不断增加,因为它可以增强金属基复合材料(MMC)并保持基体合金的延展性。本研究涉及用微SiC颗粒和纳米氧化铜(CuO)颗粒增强的杂化铝基体的烧结参数的优化。已经在不同的温度,纳米CuO含量和压实压力条件下进行了实验。将粉末混合物在55至65 N / m 2 的压力下压实。生坯在550至600℃之间的温度下烧结。采用全因子设计来研究烧结工艺参数。使用基于响应面建模的合意性分析进行了优化。实验结果表明,通过合意性分析可以有效地改善拉伸强度,密度和显微硬度等多响应特性。

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