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首页> 外文期刊>Materials Science and Engineering >In Situ Microfracture Observation Of Cu-based Amorphous Alloy Matrix Composites Containing Copper Or Brass Particles
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In Situ Microfracture Observation Of Cu-based Amorphous Alloy Matrix Composites Containing Copper Or Brass Particles

机译:含铜或黄铜颗粒的铜基非晶合金基复合材料的原位微断裂观察

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摘要

This study aims at investigating fracture mechanisms occurring in Cu-based amorphous alloy matrix composites containing ductile Cu or brass particles. Amorphous alloy powders were mixed with 20-40 vol.% of Cu or brass powders, and were consolidated at 460 ℃ for 1/2 min under 700 MPa by spark plasma sintering (SPS) equipment. The consolidated composites contained Cu or brass particles homogeneously distributed in the amorphous matrix, and showed a considerable plastic strain under a compressive loading condition, whereas their strength was lower than that of the monolithic amorphous alloy. Microfracture mechanisms were investigated by directly observing microfracture processes using an in situ loading stage. Cu or brass particles present in the composites acted as blocking sites of the propagation of cracks initiated at the amorphous matrix, and provided the stable crack growth. In front of some Cu or brass particles, the crack blunting, deflecting, and bridging were also observed, and the final crack propagation path showed frequent stops of cracks. These findings suggested that the composites consolidated by the SPS presented new possibilities of application to structural materials or parts satisfying excellent mechanical properties and large size requirements.
机译:这项研究的目的是调查在含有延性铜或黄铜颗粒的铜基非晶合金基复合材料中发生的断裂机理。将非晶态合金粉末与20-40%(体积)的Cu或黄铜粉末混合,并通过火花等离子体烧结(SPS)设备在460℃,700 MPa下固结1/2分钟。固结的复合材料包含均匀分布在非晶态基体中的Cu或黄铜颗粒,并且在压缩载荷条件下表现出相当大的塑性应变,而其强度却低于整体非晶态合金。通过使用原位加载阶段直接观察微破裂过程来研究微破裂机制。存在于复合物中的铜或黄铜颗粒充当了在无定形基体上引发的裂纹扩展的阻挡位,并提供了稳定的裂纹扩展。在一些铜或黄铜颗粒的前面,还观察到裂纹钝化,挠曲和桥接,并且最终的裂纹扩展路径显示出裂纹的频繁停止。这些发现表明,由SPS固结的复合材料为满足出色的机械性能和大尺寸要求的结构材料或零件提供了新的应用可能性。

著录项

  • 来源
    《Materials Science and Engineering》 |2009年第2期|15-22|共8页
  • 作者单位

    Center for Advanced Aerospace Materials, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea;

    Center for Advanced Aerospace Materials, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea;

    Advanced Functional Materials Team, Korea Institute of Industrial Technology, Incheon 406-840, Republic of Korea;

    Center for Advanced Aerospace Materials, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    amorphous alloy matrix composite; spark plasma sintering; consolidation;

    机译:非晶态合金基复合材料;火花等离子体烧结;固结;

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