Study on Pulsed Gas Tungsten Arc Lap Welding Techniques for 304L Austenitic Stainless Steel

Crystals Pub Date : 2024-08-09 DOI:10.3390/cryst14080715
Yi Jiang, Jiafeng Wu, Chao Zhou, Qingqing Han, Chunjian Hua
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Abstract

The lap welding process for 304L stainless steel welded using the pulsed gas tungsten arc welding (P-GTAW) procedure was studied, and the effects of the pulse welding parameters (the peak current, background current, duty cycle, pulse frequency, and welding speed) on the macroscopic morphology, microstructure, and mechanical properties of the resultant lap joints were investigated. Tensile tests, hardness measurements, and SEM/EDS/XRD analyses were conducted to reveal the characterization of the joint. The relationships between the welding parameters; certain joint characteristic dimensions (the weld width, D; the weld width on the lower plate, La; the weld depth on the lower plate, P; and the minimum fusion radius, R); and the maximum tensile bearing capacity were studied. The weld zone was primarily composed of vermicular ferrite, skeletal ferrite, and austenite, and no obvious welding defects, precipitation, or phase transformations were evident in the weld. Microhardness tests demonstrated that the weld microhardness was highest in the base metal zone and lowest in the weld zone. As the heat input increased, the average microhardness decreased. The hardness difference reached 17.6 Hv10 due to the uneven grain size and the transformation of the structure to ferrite in the weld. The fracture location in welded joints varied as the heat input changed. In some parameter combinations, the weld tensile strength was significantly higher than that of the base material, with fractures occurring in the weld. Scanning electron microscopy results exhibited an obvious dimple morphology, which is a typical form of ductile fracture. XRD revealed no significant phase changes in the weld zone, with a higher intensity of the austenite diffraction peaks compared to the ferrite diffraction peaks.
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304L 奥氏体不锈钢脉冲气体钨极氩弧焊搭接焊接技术研究
研究了使用脉冲气体钨极氩弧焊(P-GTAW)程序焊接 304L 不锈钢的搭接焊接工艺,并探讨了脉冲焊接参数(峰值电流、背景电流、占空比、脉冲频率和焊接速度)对搭接接头的宏观形貌、微观结构和机械性能的影响。通过拉伸试验、硬度测量和 SEM/EDS/XRD 分析来揭示接头的特性。研究了焊接参数、某些接头特征尺寸(焊缝宽度 D、下板焊缝宽度 La、下板焊缝深度 P 和最小熔合半径 R)与最大拉伸承载能力之间的关系。焊缝区主要由蠕墨铁素体、骨架铁素体和奥氏体组成,焊缝中没有明显的焊接缺陷、析出或相变。显微硬度测试表明,焊缝显微硬度在母材区最高,在焊接区最低。随着输入热量的增加,平均显微硬度下降。硬度差达到 17.6 Hv10,原因是晶粒大小不均匀以及焊缝中的结构转变为铁素体。焊接接头的断裂位置随输入热量的变化而变化。在某些参数组合中,焊缝抗拉强度明显高于母材,断裂发生在焊缝中。扫描电子显微镜结果显示出明显的凹陷形态,这是典型的韧性断裂形式。XRD 显示焊接区没有明显的相变,奥氏体衍射峰的强度高于铁素体衍射峰。
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