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Laser Beam Welding of Semi-Solid Rheocast Aluminium Alloy 2139

机译:半固体搅拌铝合金的激光束焊接2139

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NASA developed aluminium alloy 2139 for use in airframe structural applications as the requirement for higher strength, corrosion resistant, aluminium alloys is increasing, however the need to weld 'unweldable alloys' is also becoming apparent. 2139 is seen to be in this class. Semi-solid rheocast aluminium plates (Al-Cu-Mg-Ag) were cast in high pressure die casts. In total 27 welds were fabricated in experimentation, 3 on each plate to avoid distortion by using a continuous wave Nd:YAG. The weldability of this Al-Cu alloy was assessed by optical microscopy to indicate the quality and geometry of the passes. Comparisons were made with As-Cast (F) tempers. Laser power parameters ranged from 3 kW to 4 kW and weld speeds from 4 m/min to 6 m/min. Welds were allowed to cool naturally. The results show that by varying speed and power, when combined with heat treatments, produce diverse results for this unweldable alloy.
机译:美国宇航局开发的铝合金2139用于机身结构应用作为要求更高的强度,耐腐蚀,铝合金正在增加,然而需要焊接“不道德合金”也变得显而易见。 2139被认为是在这个课堂上。将半固体rheocast铝板(Al-Cu-Mg-Ag)浇铸在高压模具铸造中。总共27种焊缝在实验中制造,每个板上3件,通过使用连续的波Nd:YAG来避免失真。通过光学显微镜评估该Al-Cu合金的可焊性以指示通过的质量和几何形状。使用AS-CAST(F)速度进行比较。激光功率参数范围为3千瓦至4千瓦,焊接速度从4米/分钟到6米/分钟。允许焊接自然冷却。结果表明,通过不同的速度和功率,当与热处理结合时,对该不合适合金产生多样化的结果。

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