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汪兴均, 黄文荣, 魏齐龙, 沈显峰. 电子束焊接5A06铝合金接头Mg元素蒸发烧损行为分析[J]. 焊接学报, 2006, (11): 61-64.
引用本文: 汪兴均, 黄文荣, 魏齐龙, 沈显峰. 电子束焊接5A06铝合金接头Mg元素蒸发烧损行为分析[J]. 焊接学报, 2006, (11): 61-64.
WANG Xing-jun, HUANG Wen-rong, WEI Qi-long, SHEN Xian-Feng. Evaporation loss of Mg element in 5A06 aluminium alloy electron beam welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2006, (11): 61-64.
Citation: WANG Xing-jun, HUANG Wen-rong, WEI Qi-long, SHEN Xian-Feng. Evaporation loss of Mg element in 5A06 aluminium alloy electron beam welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2006, (11): 61-64.

电子束焊接5A06铝合金接头Mg元素蒸发烧损行为分析

Evaporation loss of Mg element in 5A06 aluminium alloy electron beam welding

  • 摘要: 研究了5A06铝合金电子束焊接后熔池内Mg元素的分布及其对焊缝硬度的影响,并分析了焊接工艺参数对Mg元素烧损行为的影响。结果表明,在接头区域随着熔深的增加,Mg元素含量增加,即烧损程度减小,同时显微硬度增大;随着加速电压和束流的增加,熔深增加,Mg元素烧损率降低;随着焊接速度增加,Mg元素烧损率降低,熔深却减小。为减小Mg元素烧损,在电子束焊时可适当增加焊接的加速电压与束流、加快焊接速度。

     

    Abstract: Distribution of Mg in melt pool and its effect on mechanical properties of weld are investigated in 5A06 aluminium alloy electron beam welding, and the influence of welding parameters on evaporation loss of Mg element is analyzed.The following results are obtained:with the fusion penetration increasing, the content of Mg grows, which means that evaporation loss of Mg reduces, and micro-hardness increases; with increasing of accelerating voltage and beam current, the fusion penetration increases, and the evaporation loss rate of Mg decreases; and with increasing of welding speed, the evaporation loss rate of Mg reduces while fusion penetration diminishes.In order to minimize evaporation loss of Mg, the considerable increasing of accelerating voltage, beam current and welding speed are preferred.

     

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