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首页> 外文期刊>Materials Science & Engineering Technology >Interfacial microstructure and strength of brazed copper/porous copper foam towards the effect of porous copper foam pore density and brazing holding time
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Interfacial microstructure and strength of brazed copper/porous copper foam towards the effect of porous copper foam pore density and brazing holding time

机译:钎焊铜/多孔铜泡沫朝向多孔铜泡沫孔密度和钎焊时间的界面微观结构和强度

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摘要

The porous copper foam was sandwiched between two coppers plate and then brazed using copper-tin (9.7 %)-nickel (5.7 %)-phosphorus (7 %) filler foil. Brazing process was conducted to joint copper/porous copper foam by evaluating the effect of porous copper foam pore densities [pore per inch (PPI)] and brazing holding times. The brazed joint interface of copper and porous copper foam was characterised using Field emission scanning electron microscopy and Energy-dispersive x-ray spectroscopy for the microstructure and elemental composition analysis, respectively. X-ray diffraction analysis was carried out on the shear fractured surfaces of brazed copper and porous copper foam for phase determination. The results exhibited distinct phases of copper (Cu), copper phosphide (Cu3P), nickel phosphide (Ni3P), and copper compound with tin (6 : 5) (Cu6Sn5). The filler layer was formed as an island-shaped that consists of copper phosphide and nickel phosphide. Prolong brazing holding time causes a thinner filler layer in brazing seam. While the non-uniform thickness of the filler layer was observed at different pore densities of porous copper foam. The shear strength of brazed copper/porous copper foam 15 PPI with a 10 min brazing holding time yield a maximum shear strength of 2.9 MPa.
机译:多孔泡沫铜夹在两个铜板板之间,然后使用铜 - 锡(9.7%)硬钎焊 - 镍(5.7%) - 磷(7%)的填料箔。钎焊工艺通过评估多孔铜泡沫孔密度[每英寸(PPI)孔隙]的影响,并钎焊保持时间进行关节铜/铜多孔泡沫。使用场发射扫描电子显微镜和能量色散型X射线光谱法分别用于微观结构和元素组成分析,铜和多孔铜发泡体的钎焊的接合界面进行了表征。 X射线衍射分析进行钎焊铜和铜多孔泡沫的剪切断裂面为上相位确定。结果显示出铜的不同的相(Cu),铜磷化物(Cu3P),磷化镍(磷化三镍),并用锡(6:5)铜化合物(的Cu6Sn5)。填充层形成为岛状,其由磷化铜和镍磷化物。延长钎焊的保持时间导致钎焊缝一个较薄填充物层。而在多孔泡沫铜的不同孔密度没有发现填充物层的非均匀厚度。钎焊铜/铜多孔泡沫15 PPI的用10分钟钎焊的保持时间的剪切强度得到2.9 MPa的最大剪切强度。

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  • 来源
    《Materials Science & Engineering Technology》 |2021年第6期|655-663|共9页
  • 作者单位

    Univ Malaya Dept Mech Engn Fac Engn Kuala Lumpur 50603 Malaysia;

    Univ Malaya Dept Mech Engn Fac Engn Kuala Lumpur 50603 Malaysia;

    Univ Malaya Dept Mech Engn Fac Engn Kuala Lumpur 50603 Malaysia|Univ Malaya AMMP Ctr Ctr Adv Mfg & Mat Proc Kuala Lumpur 50603 Malaysia;

    Univ Malaya Dept Mech Engn Fac Engn Kuala Lumpur 50603 Malaysia|Univ Malaya AMMP Ctr Ctr Adv Mfg & Mat Proc Kuala Lumpur 50603 Malaysia;

    Univ Malaya Dept Mech Engn Fac Engn Kuala Lumpur 50603 Malaysia|Univ Malaya Ctr Adv Mat CAM Kuala Lumpur 50603 Malaysia;

    Univ Malaya Dept Mech Engn Fac Engn Kuala Lumpur 50603 Malaysia|Univ Malaya Ctr Adv Mat CAM Kuala Lumpur 50603 Malaysia;

    Nagaoka Univ Technol Dept Mech Engn Nagaoka Niigata 9402188 Japan;

    Tokai Univ Dept Met Engn Hiratsuka Kanagawa 2591292 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Joining; foam; fractured surfaces; intermetallic compound; foil;

    机译:加入;泡沫;骨折表面;金属间化合物;箔;

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