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Effects of reheating duration on the microstructure and tensile properties of in situ core-shell-structured particle-reinforced A356 composites fabricated via powder thixoforming

机译:重新加热持续时间对通过粉末触角制备的原位核 - 壳结构颗粒增强A356复合材料的微观结构和拉伸性能的影响

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摘要

A novel in situ core-shell-structured Ti@(Al-Si-Ti) particulate-reinforced A356 composite was synthesized via powder thixoforming. It is noted that there is a significant improvement in toughness of the particulate-reinforced Al matrix composites, and the problems related to fabrication techniques were also solved. The effects of reheating duration at a semisolid temperature of 600 A degrees C on the microstructure and tensile properties of the resulting composites were investigated. The results indicated that a thick, compact Al-Si-Ti intermetallic shell formed around the Ti powders when the reheating time was at 50 min. A composite containing these reinforcing particles exhibited good tensile properties. Its ultimate tensile strength and yield strength (YS) were decreased by only 2.1 and 3.5%, respectively, while its elongation was increased by 167.8% and up to 8.3%, compared to the (Al, Si)(3)Ti-p/A356 composite that was thixoformed after the Ti powders had completely reacted. This occurred because the core-shell-structured particles with hard, compact shells exhibited strengthening role comparable to that provided by the monolithic (Al, Si)(3)Ti intermetallic particles, and the Ti core effectively inhibited or delayed crack propagation by blunting crack tips and severe plastic deformation. In addition, a modified shear lag model that incorporated the indirect strengthening mechanisms and varying shell thicknesses of Al-Si-Ti intermetallics was proposed to successfully predict the YS of the composites.
机译:通过粉末触变合成了一种新的原位核 - 壳结构Ti @(Al-Si-Ti)颗粒增强A356复合材料。应注意,颗粒增强的Al基质复合材料的韧性存在显着改善,并且还解决了与制造技术有关的问题。研究了在600℃的半固体温度下再加热持续时间对所得复合材料的微观结构和拉伸性能的影响。结果表明,当重新加热时间为50分钟时,围绕Ti粉末形成厚的紧凑型Al-Si-Ti金属间壳。含有这些增强颗粒的复合材料表现出良好的拉伸性能。其极致拉伸强度和屈服强度(ys)分别仅降低2.1和3.5%,而其伸长率为167.8%,与(Al,Si)(3)Ti-P /相比,其伸长率增加了167.8%,高达8.3%升高至8.3%。在Ti粉末完全反应后,A356复合材料是触变的。这发生了这一点是因为具有硬质壳的核心壳结构颗粒表现出与由整体(Al,Si)(3)Ti金属间颗粒提供的作用相当的作用,并且Ti核心有效地抑制或延迟裂纹裂缝裂纹传播提示和严重的塑性变形。另外,提出了一种改进的剪切滞后模型,其结合了间接强化机制和Al-Si-Ti金属间质量的变化壳体厚度,以成功预测复合材料的Ys。

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  • 来源
    《Journal of Materials Science》 |2018年第4期|共18页
  • 作者

    Chen T. J.; Qin H.; Zhang X. Z.;

  • 作者单位

    Lanzhou Univ Technol State Key Lab Adv Proc &

    Recycling Nonferrous Met Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol State Key Lab Adv Proc &

    Recycling Nonferrous Met Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol State Key Lab Adv Proc &

    Recycling Nonferrous Met Lanzhou 730050 Gansu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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