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Effect of Laser Welding Process Parameters and Filler Metals on the Weldability and the Mechanical Properties of AA7020 Aluminium Alloy

机译:激光焊接工艺参数和填充金属对AA7020铝合金焊接性能和力学性能的影响

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This research work aims at finding the optimum process parameters for the laser welding of AA7020 aluminium alloys. The use of 7xxx series alloys is limited because of weldability problems, such as hot cracking, porosity, and softening of the fusion zone despite its higher specific strength-to-weight ratio. AA7020 aluminium alloy was welded while varying the process parameters so as to obtain optimal welding efficiency. The welded samples were analysed to reveal the microstructure, defects, and mechanical properties of the welded zone. The samples were prepared from a plate of AA7020, which was hot rolled at a temperature of 470 °С to a thickness of 1 mm. The welding was carried out at an overlap of 0.25 mm, duration of 14 ms and argon shield gas flow rate of 15 L/min. Process parameters, such as peak power, welding speed, and pulse shaping, were varied. The samples were welded with Al-5Ti-B and Al-5Mg as filler metals. The welding speed, peak power, and pulse shaping have a great influence on the weldability and hot cracking susceptibility of the aluminium alloy. Al-5Ti-B improves the microstructure and ultimate tensile strength of AA7020 aluminium alloy.
机译:这项研究工作旨在为AA7020铝合金的激光焊接找到最佳工艺参数。尽管有较高的比强度/重量比,但由于可焊接性问题(例如热裂纹,孔隙率和熔化区的软化),限制了7xxx系列合金的使用。在改变工艺参数的同时焊接AA7020铝合金,以获得最佳焊接效率。分析焊接样品以揭示焊接区的微观结构,缺陷和机械性能。样品由AA7020板制备,将其在470°C的温度下热轧至1 mm的厚度。焊接以0.25 mm的重叠,14 ms的持续时间和15 L / min的氩气保护气体流速进行。诸如峰值功率,焊接速度和脉冲整形之类的工艺参数是变化的。样品用Al-5Ti-B和Al-5Mg作为填充金属焊接。焊接速度,峰值功率和脉冲整形对铝合金的可焊接性和热裂纹敏感性具有很大的影响。 Al-5Ti-B改善了AA7020铝合金的组织和极限拉伸强度。

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