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High-Speed Welding of Stainless Steel with Additional Compensatory Gas Jet Blow Molten Pool

机译:不锈钢高速焊接与额外的补偿性气体喷射熔池

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摘要

To avoid humping bead defects in high-speed welding, this paper proposes the method of an additional and compensatory gas jet blow molten pool. A pulsed metal inert gas high-speed welding test platform was constructed for compensatory gas jet blow molten pool. A total of 304 stainless steel sheets were used as the welding workpieces under equal heat inputs. Two high-speed butt welding processes were conducted and compared, in which the workpieces were welded with and without compensatory gas jets at 154 cm/min and 167 cm/min, respectively. After high-speed welding with compensatory gas jet blow, the weld appearance was straight, uniform, and high-quality, with no humping bead or undercut defects. The macroscopic morphologies and microstructures of cross-sections of the weld at the toe, near the surface, the middle, and the bottom portion all showed the stirring effect of the gas jet on the molten pool and improved grain refinement degrees. Hardness was enhanced in the weld center and the heat-affected zone. At welding speeds of 154 cm/min and 167 cm/min, the fracture load capacities of the welds were increased by 24.9 and 10.4%, respectively.
机译:为了避免高速焊接中的跳跃珠缺陷,本文提出了另外的补偿气体喷射熔池的方法。构建脉冲金属惰性气体高速焊接测试平台,用于补偿气体喷射吹气池。共有304个不锈钢板用作焊接工件,在等热输入下。进行了两种高速对接焊接工艺,其中将工件分别在154厘米/分钟和167厘米/分钟内焊接,而无需补偿气体喷射器。高速焊接采用补偿性气体喷射吹扫后,焊接外观是直的,均匀的,高品质,没有驼背或底切缺陷。脚趾焊接在表面,中间和底部附近的焊缝横截面的宏观形态和微观结构均显示了气体射流对熔池的搅拌效果和改进的晶粒细化度。在焊接中心和热影响区域中增强了硬度。焊接速度为154厘米/分钟,167厘米/分钟,焊缝的断裂载荷容量分别增加24.9%和10.4%。

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