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Influence of heat input on weld bead geometry using duplex stainless steel wire electrode on low alloy steel specimens

机译:低合金钢试样上使用双相不锈钢丝电极的热输入对焊缝几何形状的影响

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摘要

Gas metal arc welding cladding becomes a popular surfacing technique in many modern industries as it enhances effectively corrosion resistance property and wear resistance property of structural members. Quality of weld cladding may be enhanced by controlling process parameters. If bead formation is found acceptable, cladding is also expected to be good. Weld bead characteristics are often assessed by bead geometry, and it is mainly influenced by heat input. In this paper, duplex stainless steel E2209 T01 is deposited on E250 low alloy steel specimens with 100% CO_(2) gas as shielding medium with different heats. Weld bead width, height of reinforcement and depth of penetration are measured. Regression analysis is done on the basis of experimental data. Results reveal that within the range of bead-on-plate welding experiments done, parameters of welding geometry are on the whole linearly related with heat input. A condition corresponding to 0.744?kJ/mm heat input is recommended to be used for weld cladding in practice.
机译:气体保护金属电弧焊熔覆层有效地增强了结构构件的耐腐蚀性和耐磨性,因而在许多现代工业中成为一种流行的堆焊技术。通过控制工艺参数可以提高熔敷质量。如果发现珠子形成可接受,则预期覆层也将是良好的。焊缝特征通常通过焊缝几何形状来评估,并且主要受热量输入的影响。在本文中,将双相不锈钢E2209 T01沉积在以100%CO_(2)气体作为热源的E250低合金钢试样上作为屏蔽介质。测量焊缝宽度,钢筋高度和熔深。回归分析是根据实验数据进行的。结果表明,在完成的串焊实验范围内,焊接几何参数总体上与热量输入呈线性关系。在实践中建议将对应于0.744?kJ / mm热输入的条件用于熔敷。

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