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Mechanical Properties and Microstructure of Pulsatile Current Gas Tungsten Arc Welding (PC-GTAW) of AISI 304L Butt Joint Weld

机译:AISI 304L对接接头焊接脉动电流锚杆弧焊(PC-GTAW)的力学性能和微观结构

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摘要

In this research, investigation of mechanical properties and microstructure on Pulsatile Current Gas Tungsten Arc Welding (PC-GTAW) was carried out. AISI 304L was chosen as a base material with autogenous welding and butt joint configuration. The dimension of the base material was 120 × 50 mm and the thickness of 3 mm. The welding with pulsatile current and constant current were used in the welding process in this study. In the pulsatile current, the mean current was made all the same with a constant current of 100 amperes. The peak current, base current and time of peak and base current were varied to make it the same. The welding speed used is constant at 2.0 mm/s. The result shows that the HAZ area will get shrinkage if welded using pulsatile current welding. The welding with a pulsatile current can produce more fine cellular dendritic structure than the welding with a constant current. The UTS in the welding with a pulsatile current was lower than the welding with constant current, while the impact toughness in the welding with a pulsatile current was higher than the welding with a constant current. The highest of the UTS and the impact toughness of 577.62 MPa on parameter 65-A and 27 J on parameter 65-C, respectively.
机译:在该研究中,进行了对脉动电流钨弧焊(PC-GTAW)的力学性能和微观结构的研究。选择AISI 304L作为具有自动焊接和对接联合配置的基材。基材的尺寸为120×50mm,厚度为3mm。在本研究中的焊接过程中使用具有脉动电流和恒定电流的焊接。在脉冲电流中,平均电流与100安培的恒定电流相同。峰值电流,峰值和基极电流的峰值电流和时间变化,使其成为相同的。使用的焊接速度在2.0mm / s处恒定。结果表明,如果使用脉动电流焊接焊接,HAZ区域将获得收缩。具有脉冲电流的焊接可以产生比具有恒定电流的焊接更细的细胞树突结构。焊接中的UTS具有脉动电流的焊接低于恒定电流的焊接,而具有脉动电流的焊接中的冲击韧性高于恒定电流的焊接。在参数65-C上分别在参数65-A和27J上的最高UTS和577.62MPa的冲击韧性。

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