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Prediction of Welding Parameters and Weld Bead Geometry for GMAW Process in Overhead T-Fillet Welding Position(4F)

机译:桥接圆角焊接位置焊接参数和焊珠几何形状的预测(4F)

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The prediction of welding parameters and weld bead geometry for GMAW process in Overhead T-fillet welding position (4F) is presented in this paper. This welding position is applied in construction of steel structures and ship building. The task to discover the range of welding parameter that can deposit quality fillet weld in overhead position is difficult, and the cost of developing them by trial and error is high. Robotic GMAW welder is employed to weld in 4F position with CO_2 shielding. The current, voltage and speed as parameters, wire extension at 13 mm constant. Only weld coupons are analyzed by macro-etching and the fillet geometry is plotted graphically to display the correlation with the respective welding parameter, particularly the heat input. Trend-lines with mathematical formulas are selected to develop the fillet geometry predictor. The predicted fillet geometry is validated by comparing with the values from actual welded coupons. The mean absolute deviation (MAD) of the predicting calculator is less than 1.0 mm, it is therefore accurate and valid for industrial application.
机译:本文介绍了架空T圆角焊接位置(4F)中GMAW工艺焊接参数和焊缝几何形状的预测。该焊接位置适用于钢结构和船舶建筑的构造。可以难以沉积在架空位置存放质量圆角焊缝的焊接参数范围的任务是困难的,并且通过试验和错误开发它们的成本很高。机器人GMAW焊机采用CO_2屏蔽焊接在4F位置。电流,电压和速度作为参数,电线延伸13毫米恒定。仅通过宏蚀刻分析焊接优惠券,并且图形地绘制圆角几何形状以显示与相应的焊接参数,特别是热输入的相关性。选择具有数学公式的趋势线以开发圆角几何预测器。通过与实际焊接优惠券的值进行比较,验证了预测的圆角几何。预测计算器的平均绝对偏差(MAD)小于1.0 mm,因此对工业应用准确和有效。

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