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THERMOGRAPHICAL ANALYSIS OF FRICTION STIR WELDING AND LASER ASSISTED FRICTION STIR WELDING

机译:摩擦搅拌焊接和激光辅助摩擦搅拌焊接的热谱分析

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Friction Stir Welding (FSW), developed at The Welding Institute (TWI) in 1991, is a new solid-state welding process. In this technique, the material does not reach the fusion but the joint is the consequence of the plasticization resulting from the generation of heat by friction and the stirring action of the pin on the material due to the rotation and the displacement of a non-consumable tool. Thus, the FSW reaches temperatures lower than those reached by conventional fusion welds. Laser Assisted Friction Stir Welding (LAFSW) is a combined welding technique in which the FSW is assisted, during the weld, by the preheating of a de-focalized laser. This technique leads higher welding speeds, lower clamping force and it has some benefits for tool wear. Nevertheless the control of the temperature field is fundamental to guarantee a high quality joint. In this work FSW and LAFSW bead on plate tests were conducted on 6 mm thick 5754 H111 aluminum alloy plates with constant tool rotation and welding speed. Thermographic images were acquired to compare the effect on the temperature field of laser source distance from the tool and laser power.
机译:1991年在焊接研究所(TWI)开发的摩擦搅拌焊接(FSW)是一种新的固态焊接过程。在该技术中,材料不达到熔化,但是接头是由于摩擦通过摩擦产生的热量和由于旋转而导致的销的搅拌作用和不可耗材的位移产生的塑化产生的塑化。工具。因此,FSW达到低于传统熔焊焊缝的温度。激光辅助摩擦搅拌焊接(LaFSW)是通过预聚焦激光的预热,在焊接期间辅助FSW的组合焊接技术。该技术导致较高的焊接速度,较低的夹紧力,并且对工具磨损具有一些好处。然而,对温度场的控制是基本的,以保证高质量的关节。在这项工作中,在恒定工具旋转和焊接速度的6mm厚的5754 H111铝合金板上进行FSW和Lafsw珠子。获取热敏图像以比较从工具和激光功率的激光源距温度场的影响。

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