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Measurement of the bead profile and microstructural characterization of a CO2 laser welded AISI 904 L super austenitic stainless steel

机译:CO2激光焊接AISI 904 L超级奥氏体不锈钢的焊道轮廓测量和显微组织表征

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Laser welding of AISI 904 L super austenitic stainless steel using a diffusion cooled slab 3.5kW CO2 laser and employing two different shielding gases, namely argon and helium, was carried out. The laser weld bead profile depends on various parameters such as beam power (BP), travel speed (TS) and focal position (FP) of the laser spot. These parameters have to be selected suitably to obtain the desirable output. The cross sectioned area of the bead profiles measured using an optical microscope to determine the bead width and depth of penetration. X-ray diffraction used for phase identification confirmed that the weld structure was fully austenitic and dendritic. Hardness was observed to increase in the weld bead with respect to the parent metal and it was related to the microstructural refinement induced by a rapid cooling of the weld zone.
机译:对AISI 904 L超级奥氏体不锈钢进行了激光焊接,使用的是扩散冷却的平板3.5kW CO2激光器,并使用了两种不同的保护气体,即氩气和氦气。激光焊缝轮廓取决于各种参数,例如激光束的光束功率(BP),行进速度(TS)和焦点位置(FP)。必须适当选择这些参数以获得所需的输出。使用光学显微镜测量的珠子轮廓的横截面积,以确定珠子的宽度和穿透深度。用于相识别的X射线衍射证实焊缝结构完全为奥氏体和枝晶。观察到相对于母材金属,焊道中的硬度增加,并且与由焊接区域的快速冷却引起的显微组织细化有关。

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