Haz Formation And Analysis In Flux Assisted Gtaw

Gurveen Singh
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Abstract

The effect of Silicon dioxide (SiO2) powder on weld bead geometry, Heat affected zone (HAZ), and micro-hardness of SS304 grade Austenitic stainless steel weld was investigated. SiO2 improves the weld bead penetration with a simultaneous reduction in bead width. The improvement in penetration results from arc constriction and reversal of Marangoni flow. The results demonstrate SiO2 flux can increase the heat density by arc constriction and Marangoni convection. The temperature in HAZ reaches above the recrystallization temperature and consequently leads to the formation of new grains. The new grains formed in HAZ are of a very large size as compared to parent metal grains. Due to Larger grains, the micro-hardness in HAZ area was found to be less than weld metal and base metal zone. Increased heat density by using SiO2 flux increased the size of Heat Affected Zone. KeywordsActive TIG, Marangoni convection, arc constriction,
助熔剂Gtaw中Haz的形成与分析
研究了二氧化硅(SiO2)粉末对SS304级奥氏体不锈钢焊缝焊缝几何形状、热影响区(HAZ)和显微硬度的影响。SiO2在减小焊头宽度的同时提高了焊头的熔透度。穿透力的提高是由于电弧收缩和马兰戈尼流的逆转。结果表明,SiO2助熔剂可以通过电弧收缩和马兰戈尼对流增加热密度。热影响区温度高于再结晶温度,导致新晶粒的形成。热影响区形成的新晶粒与母金属晶粒相比尺寸很大。由于晶粒较大,热影响区显微硬度低于焊缝区和母材区。SiO2助熔剂的热密度增大,热影响区尺寸增大。关键词主动TIG; Marangoni对流;弧缩;
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