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Effect of orbital automatic welding on the weld metal mechanical properties in API 5L X65 natural gas transmission pipe

机译:轨道自动焊接对API 5L X65天然气输电管焊接金属机械性能的影响

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API 5L-X65 steel pipes with a 17.5mm wall thickness and 762mm in outer diameter were welded using an orbital automatic welding process. Flux Cored Arc Welding (FCAW) and Gas tungsten Arc Welding (GTAW) consumables were utilized to evaluate automatic the welding process. Manual weld were deposited using GTAW with ER70S-G filler metal for the root pass and Shielded Metal Arc Welding (SMAW) with low hydrogen E9016-G electrode for the remaining passes. Charpy impact test, CTOD (Crack Tip Opening Test) test and micro-hardness test on the weld metal were carried out and the effects of weld metal composition and microstructure on the weld metal toughness were investigated. The filler metals that have superior fracture toughness were E80T1-K2 and E71T-1 of FCAW process and ER80S-G of GTAW process. The foller metals that have proper hardness were E80T1-K2 and E71T-1 of FCAW process.
机译:使用轨道自动焊接工艺焊接具有17.5mm壁厚和762mm的API 5L-X65钢管,焊接762mm。 Flux Cored弧焊(FCAW)和气体钨弧焊(GTAW)耗材被用来评估自动焊接过程。使用GTAW使用具有ER70S-G填充金属的GTAW沉积手动焊接,用于根通过和屏蔽金属弧焊(SMAW),具有低氢E9016-G电极的剩余通行证。夏比冲击试验,CTOD(裂纹尖端开度测试)进行焊接金属的测试和微硬度试验,研究了焊接金属组合物的影响和微观结构对焊接金属韧性的影响。具有优异的断裂韧性的填料金属是E80T1-K2和E71T-1的Fcaw工艺和ER80S-G的GTAW方法。具有适当硬度的Foller金属是E80T1-K2和FCAW过程的E71T-1。

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