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The Effect of Ultrasonic Vibration on Properties of Weld Metal

机译:超声波振动对焊缝金属性能的影响

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Weld metal mechanical properties and weldability of materials are closely related to the microstructure of the weld metal. A significant amount of research has been studied to improve microstructure of weldments such as weld pool stirring by using magnetic arc oscillation and arc pulsation. In this work, the effect of ultrasonic vibration was used to modify weld metal solidification to improve microstructure of the weld metal. Microstructure and mechanical properties of carbon steel weld metal (ER70S-G filler metal) were studied. Filler metal was melted by using Gas Tungsten Arc Welding (GTAW) in a water-cooled copper mold. Ultrasonic vibration with a frequency of 20 kHz was applied during solidification of the weld metal. Microstructure and mechanical properties of weld metal were compared with those of conventional weld metal (no ultrasonic vibration assistance). Scanning Electron Microscopy (SEM) was also used to determine microstructure and phases at high magnification. The results showed that ultrasonic vibration applied during solidification promoted grain refinement in the weld metal. Mechanical properties of weld metal were improved significantly, microstructure analysis correlated well with the mechanical test results.
机译:焊接金属机械性能和材料的可焊性与焊接金属的微观结构密切相关。已经研究了大量的研究,以通过使用磁弧振荡和电弧脉动来改善焊接池搅拌的焊接微观结构。在这项工作中,超声波振动的效果用于改变焊接金属凝固以改善焊接金属的微观结构。研究了碳钢焊接金属(ER70S-G填充金属)的微观结构和力学性能。通过在水冷铜模具中使用气体钨弧焊(GTAW)熔化填充金属。在焊接金属的凝固过程中施加具有20kHz频率的超声波振动。将焊接金属的微观结构和力学性能与传统焊接金属(无超声波振动辅助)进行比较。扫描电子显微镜(SEM)还用于确定高放大率的微观结构和相位。结果表明,凝固过程中施加的超声振动促进焊接金属中的晶粒细化。焊接金属的力学性能显着改善,微观结构分析与机械测试结果相比好。

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