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Effect of interlayer thickness on shear deformation behavior of AA5083 aluminum alloy/SS41 steel plates manufactured by explosive welding

机译:夹层厚度对爆炸焊接AA5083铝合金/ SS41钢板剪切变形行为的影响

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摘要

An AA5083 aluminum alloy plate and an SS41 steel plate were cladded by an explosive welding method using an AA1050 aluminum alloy interlayer plate. The effects of the interlayer thickness on the interface morphology and the shear deformation behavior of the cladded plates were studied. The interfacial zone was composed of an intermetallic compound, FeAl3, formed by the AA1050 interlayer. The intermetallic compound acted as a crack source at the AA1050/SS41 interface, and the thickness and morphology of the interfacial zone were depended on the thickness of the AA1050 interlayer. In a shear deformation test, the crack propagation behavior varied according to the morphologies of the interfacial zone, and the shear strength of the cladded plates decreased with the interlayer thickness.
机译:使用AA1050铝合金夹层板通过爆炸焊接方法来包覆AA5083铝合金板和SS41钢板。研究了夹层厚度对复合板界面形态和剪切变形行为的影响。界面区域由AA1050中间层形成的金属间化合物FeAl3 组成。金属间化合物在AA1050 / SS41界面处充当裂纹源,界面区域的厚度和形态取决于AA1050中间层的厚度。在剪切变形试验中,裂纹扩展行为根据界面区域的形态而变化,并且夹层板的剪切强度随着层间厚度的增加而降低。

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  • 来源
    《Journal of Materials Science》 |2003年第1期|13-18|共6页
  • 作者单位

    Division of Materials Science and Technology Korea Institute of Science and Technology;

    Division of Materials Science and Technology Korea Institute of Science and Technology;

    Division of Materials Science and Technology Korea Institute of Science and Technology;

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  • 正文语种 eng
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