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环境压力对GMAW电弧能量耗散的影响
引用本文:郭力玮,黄继强,冯音琦,薛龙,黄军芬,亓浩. 环境压力对GMAW电弧能量耗散的影响[J]. 焊接学报, 2022, 43(2): 61-66. DOI: 10.12073/j.hjxb.20210609003
作者姓名:郭力玮  黄继强  冯音琦  薛龙  黄军芬  亓浩
作者单位:北京石油化工学院, 北京, 102617
基金项目:国家重点研发计划项目(2018YFB1306904);;北京市自然科学基金-北京市教委联合资助项目(KZ201810017022);
摘    要:能量对电弧行为具有重要影响,开展高压环境下GMAW电弧能量耗散研究对指导焊接工艺和提升电弧稳定性具有重要意义.电弧的能量损失难以直接测量,为此创建以电弧中心一定距离的圆柱面的热流量作为参考,比较不同压力GMAW电弧的能量损失,基于流体力学和传热学理论,建立高压GMAW数值分析模型,计算电弧局部区域对外能量传输情况.建立...

关 键 词:高压焊接  熔化极气体保护焊  焊接电弧  能量耗散  水下焊接
收稿时间:2021-06-09

Effect of ambient pressure on energy dissipation of GMAW arc
Affiliation:Beijing Institute of Petrochemical Technology, Beijing, 102617, China
Abstract:The behavior of arc is affected deeply by energy. The study on energy dissipation of GMAW arc in high pressure environment is of great importance to guide welding process and improve arc stability. The energy loss of the arc is difficult to be measured directly. Therefore, the heat flow of the cylinder at a certain distance from the center of the arc is used as a reference to compare the energy loss of GMAW arc under different pressures. Based on the hydrodynamics and heat transfer theory, a numerical analysis model of the high pressure GMAW was established to calculate the external energy transmission of the local area of the arc. The experimental platform of high pressure GMAW energy dissipation measurement was established, and the energy transmission of the whole cylinder was obtained by collecting the energy transmission amount of 1/16 cylinder for conversion, and the measured results were corrected by using the natural convection heat transfer model of the circular tube. The influence of ambient pressure on arc energy dissipation is analyzed by comparing the simulation and experiment results. The results show that the external energy dissipation of GMAW arc increases, The high temperature region of the arc gathers towards the center of the arc, and the arc appears to shrink at the same time. with the increase of ambient pressure, the energy dissipation of the arc near the cathode region enhances more, and the arc shrinkage in the cathode region is more obvious, which is one of the inducement of the instability of the high voltage GMAW arc.
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