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Mechanical performance of particulate-reinforced Al metal-matrix composites (MMCs) and Al metal-matrix nano-composites (MMNCs)

机译:颗粒增强Al金属基复合材料(MMCS)和Al金属 - 基质纳米复合材料(MMNC)的力学性能

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摘要

The metal-matrix composites/nano-composites (MMCs/MMNCs) reinforced with hard ceramic particulates have received a tremendous attention due to their potential improvements in physical and mechanical performances. In the present work, we have comprehensively collected currently available experimental data sets of Al-based MMCs/MMNCs and have carried out thorough analyses to quantitatively address the impacts of the reinforcement volume fractions, reinforcement particle sizes, and metal-matrix grain sizes on their mechanical properties including the yield strength, ultimate strength, and strain to failure of composites. We also performed a quantitative analysis on the strengthening mechanisms of Al MMNCs to reveal that the grain refinement can play a major role in increasing the strength of composites. Al-based MMC or MMNC materials generally exhibited an indirect relationship between the strength increase and strain-to-failure increase. The results include a critical comparison for the mechanical performance of particulate-reinforced composites for both pure and alloyed Al matrices to elucidate the contemporary status of Al MMC and MMNC materials.
机译:由于它们对物理和机械性能的潜在改进,用硬陶瓷颗粒增强的金属基复合材料/纳米复合材料(MMC / MMCS)引起了巨大的关注。在本作工作中,我们全面收集了目前基于Al的MMCS / MMNC的实验数据集,并且已经进行了彻底的分析,以定量地解决加强体积分数,加强粒径和金属 - 基质粒度的影响机械性能,包括屈服强度,极限强度和复合材料损失的菌株。我们还对Al MMNC的强化机制进行了定量分析,揭示晶粒细化可以在增加复合材料的强度时发挥重要作用。基于Al的MMC或MMNC材料通常在强度增加和菌株对失败之间的间接关系。结果包括用于纯和合金al基质的颗粒增强复合材料的力学性能的关键比较,以阐明Al MMC和MMNC材料的当代地位。

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