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利用脉动送丝控制水下焊接中的熔滴过渡

Control of Droplet Transition in Underwater Welding Using Pulsating Wire Feeding.

作者信息

Guo Ning, Huang Lu, Du Yongpeng, Cheng Qi, Fu Yunlong, Feng Jicai

机构信息

State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150000, China.

Shandong Provincial Key Laboratory of Special Welding Technology, Harbin Institute of Technology at Weihai, No. 2 Wenhuaxi Road, Weihai 264209, China.

出版信息

Materials (Basel). 2019 May 27;12(10):1715. doi: 10.3390/ma12101715.

Abstract

Underwater wet welding technology is widely used. Because the stability of droplet transfer in underwater wet welding is poor, the feasibility of improving the droplet transfer mode has been discussed from various technical directions. In this work, the characteristics of pulsating wire feeding were studied in the pulsating wire feeding mode by investigating the effects of changing the pulsating frequency, the wire withdrawal speed, and the wire withdrawal quantity on the droplet transfer process and the welding quality. With the aim of improving weld forming and welding stability, the authors selected the coefficient of variation and the ratio of unstable droplet transfer as the indexes to evaluate the effect of droplet transfer control. The pulsating wire feeding process of underwater wet flux-cored wire was analyzed in depth, and the following conclusions were drawn: using the pulsating wire feeding mode and after comparing and analyzing the pulsed wire feeding process under the same frequency condition, the authors found that the forming and stability were better under the conditions of slower withdrawal speed and smaller withdrawal quantity. The short-circuit transition ratio decreased steadily with the increase of pulsating wire feeding frequency, the rejection transition ratio first rose and then decreased, and the splash ratio first decreased and then rose.

摘要

水下湿法焊接技术应用广泛。由于水下湿法焊接中熔滴过渡稳定性较差,已从多个技术方向探讨了改善熔滴过渡方式的可行性。在这项工作中,通过研究改变脉动频率、抽丝速度和抽丝量对熔滴过渡过程和焊接质量的影响,对脉动送丝模式下的脉动送丝特性进行了研究。为了提高焊缝成形和焊接稳定性,作者选择变异系数和不稳定熔滴过渡比例作为评价熔滴过渡控制效果的指标。对水下药芯焊丝脉动送丝过程进行了深入分析,得出以下结论:采用脉动送丝模式,在相同频率条件下对脉动送丝过程进行比较分析后,发现抽丝速度较慢、抽丝量较小时,成形和稳定性较好。短路过渡比例随脉动送丝频率的增加而稳步下降,排斥过渡比例先上升后下降,飞溅比例先下降后上升。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79f5/6567166/bb17ad4bbc09/materials-12-01715-g001.jpg

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