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首页> 外文期刊>Arabian Journal for Science and Engineering >Fiber Laser Welding of Thin Nickel Sheets in Air andWater Medium
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Fiber Laser Welding of Thin Nickel Sheets in Air andWater Medium

机译:空气和水介质中薄镍片的光纤激光焊接

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摘要

In the present research, fiber laser beam welding (FLBW) of thin nickel sheets in two different mediums, i.e., air and water, has been investigated. In air medium, the fiber laser welding operations are performed at different laser powers (60, 80 and 100W) and scanning speeds (40, 60 and 80 mm/min). Underwater welding operations have also been investigated at three different laser powers (330, 350 and 370W) and two different scanning speeds (20 and 40 mm/min). The results show that welding of Ni sheet with higher laser power results in prominent heat-affected zone, increase in both microhardness and wt% of oxide formation in the weldment in both air and water medium. It is found that the increase in microhardness of weldment leads to the reduction in grain size. The heat-affected zone is reduced when scanning speed is increased. The wt% of oxygen increases with an increase in power during FLBW operation at constant scanning speed, and the oxide formation can be controlled by varying the laser power and scanning speed. The welding medium has significant influences on the properties of the weldments.
机译:在本研究中,已经研究了在两种不同的介质,即空气和水中的薄镍片的光纤激光束焊接(FLBW)。在空气介质中,光纤激光焊接操作以不同的激光功率(60、80和100W)和扫描速度(40、60和80 mm / min)执行。还研究了三种不同激光功率(330、350和370W)和两种不同扫描速度(20和40 mm / min)下的水下焊接操作。结果表明,在空气和水介质中,具有较高激光功率的Ni板焊接都会导致显着的热影响区,显微硬度和氧化物形成的wt%均增加。发现焊件的显微硬度的增加导致晶粒尺寸的减小。当增加扫描速度时,热影响区域减小。在恒定的扫描速度下,FLBW操作期间,氧气的重量百分比随功率的增加而增加,并且可以通过改变激光功率和扫描速度来控制氧化物的形成。焊接介质对焊件的性能有重大影响。

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