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新型铝合金板材双面焊接头性能研究
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北京工业大学,北京工业大学,北京工业大学,北京工业大学,北京工业大学

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TG457.1

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国家“973”项目资助(项目号2012CB619503)


Study on the performance of a new aluminum alloy joint with Butt-weld
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Beijing University Of Technology,,,,

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    摘要:

    本文针对一种新型Al-Zn-Mg-Cu合金进行双面MIG焊接,观察接头部位组织形貌,并进行力学性能测试,然后基于visual-weld进行温度场的仿真计算,建立接头部位温度场与组织形貌和硬度的关系。然后采用X射线法对焊件进行残余应力测试。结果表明,焊缝中心为粗大等轴树枝状晶,靠近熔合线存在一个细晶层,在细晶层内侧为典型的联生结晶形貌,熔合线外侧出现部分晶界重熔;焊接件残余应力较小,两端应力分布趋势相反,其它部位分布基本相同。由于温度循环和η相的影响,在接头热影响区位置,硬度值明显高于母材和焊缝。

    Abstract:

    :A new type Al-Zn-Mg-Cu alloy Al-Mg alloy was welded using Tungsten Inert Gas welding method. Microstructures and microhardness of the joint were analyzed. The relationship between the temperature and microstructure and microhardness were established based on the simulation result of the temperature fieldthrough the Visual-weld.At last, the residual stress was employing the X-ray diffraction method. The results showed that microstructure in the weldseam shown as corase equiaxed grain zone(EQZ). That zone closed to fusion line was an equiaxed grain zone with small size, whichis ascalled Fine-Grain Layer. For the Fine-Grain layer, microstructure showed epitaxial solidification morphology. However, partial grain boundary re-melt appears outside of fusion line. Residual stress in the weldment is small and has the same distribution in the stable forming segment of weldseam. However, it has an inverse distribution in the front end of weldseam. With the influence of temperature curve of welding and η phase, microhardnesses in the hot affect zone is bigger than that in other zones in the weldment.Keywords:Butt-weld of MIG; Al-Zn-Mg-Cualloy; residual stress; microtopography; microhardness

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孙建通,李晓延,张亮,兖文涛,杨秦政.新型铝合金板材双面焊接头性能研究[J].稀有金属材料与工程,2017,46(9):2607~2612.[sunjiantong, Li Xiao yan, zhanliang, Yanwentao, Yangqinzheng. Study on the performance of a new aluminum alloy joint with Butt-weld[J]. Rare Metal Materials and Engineering,2017,46(9):2607~2612.]
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  • 收稿日期:2015-05-02
  • 最后修改日期:2015-08-15
  • 录用日期:2015-09-07
  • 在线发布日期: 2017-11-29
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