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Influence of TIG shielding gas composition on weld geometry and corrosion properties of titanium weld joints

机译:TIG屏蔽气体组成对钛焊接接头焊接几何形状和腐蚀性能的影响

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This paper presents an experimental study of influence of shielding gas composition on TIG produced weld bead geometry and its corrosion resistance. Short overview of properties, application and weldability of Titanium was provided in the introduction of the paper. Within the framework of the experimental work, four bead on plate welds were produced using two different shielding gases (EN ISO 14175: I1 and EN ISO 14175: I3) and two welding speeds (v1 = 9 cm/min, v2 = 15 cm/min). Influence of shielding gases was investigated by analysing weld bead geometry and corrosion resistance testing. Weld bead geometry analysis showed that shielding gas has a significant influence on the penetration and width. Using EN ISO 14175: I3 as shielding gas resulted in larger penetration and width of the weld bead when welding with both welding speeds. Corrosion testing implicates that higher heat input results in a lower corrosion resistance of the welded joint.
机译:本文介绍了屏蔽气体成分对抗焊珠几何形状及其耐腐蚀性影响的实验研究。纸张的推出,提供了钛的性能,应用和可焊性的简短概述。在实验工作的框架内,使用两个不同的屏蔽气体(EN ISO 14175:I1和EN ISO 14175:I3)和两种焊接速度(V 1 = 9cm / min,v 2 = 15厘米/分钟)。通过分析焊珠几何和耐腐蚀性测试,研究了屏蔽气体的影响。焊缝几何分析表明,屏蔽气对渗透和宽度有显着影响。使用EN ISO 14175:I3作为屏蔽气导致焊接焊接速度焊接时焊缝的较大穿透和宽度。腐蚀测试意味着较高的热输入导致焊接接头的耐腐蚀性较低。

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