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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and mechanical behavior of AA2024/B4C composites with a network reinforcement architecture
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Microstructure and mechanical behavior of AA2024/B4C composites with a network reinforcement architecture

机译:AA2024 / B4C复合材料的组织和力学行为,网络加固架构

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We reported an investigation of the influence of B4C contents on microstructure and mechanical behavior of AA2024/B4C composites. In our work, nearly full-dense AA2024/B4C composites with various B4C contents were fabricated by plasma activated sintering. Our results indicated that the B4C particles exhibit a network distribution in the composites with 7.5 wt % and 17.5 wt % B4C particles, adjacent particles of monolithic alloy are continuous or interpenetrated among the B4C particles in the powder boundary region. However, for the composite with 27.5 wt % B4C particles, the adjacent particles of monolithic alloy are interdicted due to the formation of severe aggregations. Improving the content of B4C particles will increase the hardness and compressive yield strength of the composites. However, the yield strength of the composite failed to be further improved when adding too much B4C because of the agglomeration of the reinforcements. With the content of 17.5 wt % B4C, the Vickers hardness and compressive yield strength of the consolidated composites were 203.2 HV and 564 MPa, respectively. In addition, quantitative analysis of the strengthening mechanisms revealed that increasing the weight fraction of the B4C particles results in larger augment in dislocation strengthening and load-bearing strengthening. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们报道了对AA2024 / B4C复合材料的微观结构和力学行为对B4C内容物的影响的研究。在我们的工作中,通过等离子体活性烧结制造具有各种B4C内容物的几乎全致密的AA2024 / B4C复合材料。我们的结果表明,B4C颗粒在复合材料中具有7.5wt%和17.5wt%B4C颗粒的网络分布,相邻的整体合金颗粒在粉末边界区域的B4C颗粒中连续或渗入。然而,对于具有27.5wt%B4C颗粒的复合材料,由于形成严重聚集,互相合金的相邻颗粒被扰动。改善B4C颗粒的含量将增加复合材料的硬度和压缩屈服强度。然而,由于增强件的聚集,在添加过多的B4C时,复合材料的屈服强度未能进一步提高。含量为17.5wt%b4c,巩固复合材料的维氏硬度和压缩屈服强度分别为203.2HV和564MPa。此外,对强化机制的定量分析表明,增加B4C颗粒的重量分数导致脱位强化和承载强化的增加。 (c)2017年Elsevier B.V.保留所有权利。

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