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A Study on Prediction of the Optimal Process Parameters for GMA Root-pass welding in Pipeline

机译:在管道中GMA根焊焊接最佳过程参数预测的研究

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摘要

Conventionally, welding processes are highly labor-intensive and need skilled operators. Compared to plate welding process, pipe welding process imposes higher skill requirement on operators and sound welds which guaranteed to be repeatable from weld to weld because of the harsh environment and intense process disturbance. Also, the automated arc welding process becomes important for productivity, quality and cost-efficiency. Even if many welding parameters, such as the arc current, welding voltage and weld speed, can affect the result of weldability, most of the automated welding system cannot handle so many welding parameters online to adapt the change of conditions during the weld process. Therefore, a suitable control algorithm to get a good weld quality in the pipe welding process must be developed The objective of this study is focused on developing an automatic control algorithm not only to improve the productivity, quality and efficiency of the STT (Surface Tension Transfer) welding process, but also to select the optimal welding conditions for root-pass welding. This algorithm should be able to adjust the optimal welding parameters to ensure the welding quality and overcome the process variability, fluctuation and disturbance.
机译:传统上,焊接过程是高度劳动密集型的,需要熟练的操作员。与板式焊接过程相比,管焊过程对操作员和响应焊缝的技能要求施加了更高的技能要求,这保证由于恶劣的环境和激烈的过程干扰,可以从焊缝到焊接可重复。此外,自动电弧焊接过程对于生产率,质量和成本效率变得重要。即使许多焊接参数,如电弧电流,焊接电压和焊接速度,也会影响可焊性的结果,大部分自动化焊接系统都无法在线处理这么多的焊接参数,以适应焊接过程中的条件的变化。因此,必须开发出在管焊过程中获得良好焊接质量的合适的控制算法,本研究的目的集中在开发自动控制算法,不仅可以提高STT的生产率,质量和效率(表面张力转移)焊接工艺,还要选择根焊焊接的最佳焊接条件。该算法应该能够调整最佳焊接参数,以确保焊接质量,克服工艺变异性,波动和干扰。

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