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Fiber Laser Welding of Dissimilar 2205/304 Stainless Steel Plates

机译:异种2205/304不锈钢板的光纤激光焊接

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摘要

In this study, an attempt on pulsed-fiber laser welding on an austenitic-duplex stainless steel butt joint configuration was investigated. The influence of various welding parameters, such as beam diameter, peak power, pulse repetition rate, and pulse width on the weld beads geometry was studied by checking the width and depth of the welds after each round of welding parameters combination. The weld bead dimensions and microstructural progression of the weld joints were observed microscopically. Finally, the full penetration specimens were subjected to tensile tests, which were coupled with the analysis of the fracture surfaces. From the results, combination of the selected weld parameters resulted in robust weldments with similar features to those of duplex and austenitic weld metals. The weld depth and width were found to increase proportionally to the laser power. Furthermore, the weld bead geometry was found to be positively affected by the pulse width.udMicrostructural studies revealed the presence of dendritic and fine grain structures within the weld zone at low peak power, while ferritic microstructures were found on the sides of the weld metal near the SS 304 and austenitic-ferritic microstructure beside the duplex 2205 boundary. Regarding the micro-hardness tests, there was an improvement when compared to the hardness of duplex and austenitic stainless steels base metals. Additionally, the tensile strength of the fiber laser welded joints was found to be higher when compared to the tensile strength of the base metals (duplex and austenitic) in all of the joints.
机译:在这项研究中,研究了在奥氏体-双相不锈钢对接接头结构上进行脉冲光纤激光焊接的尝试。通过在每轮焊接参数组合后检查焊缝的宽度和深度,研究了各种焊接参数,例如束直径,峰值功率,脉冲重复频率和脉冲宽度对焊缝几何形状的影响。显微观察焊缝的焊道尺寸和微观结构进程。最后,对全穿透试样进行拉伸测试,并与断裂表面分析相结合。从结果来看,所选焊接参数的组合产生了与双相和奥氏体焊接金属具有相似特征的坚固焊接。发现焊接深度和宽度与激光功率成比例地增加。此外,发现焊缝的几何形状受脉冲宽度的影响。 ud显微组织研究表明,在低峰值功率下,焊接区内存在树枝状和细晶粒组织,而在焊缝金属的侧面发现了铁素体显微组织。在双相2205边界旁的SS 304和奥氏体-铁素体显微组织附近。关于显微硬度测试,与双相和奥氏体不锈钢基体金属相比,硬度有所提高。此外,发现与所有接头中的贱金属(双相和奥氏体)的抗拉强度相比,光纤激光焊接接头的抗拉强度更高。

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