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首页> 外文期刊>Journal of Materials Processing Technology >Effects of shielding gases on process stability of 10CrNi3MoV steel in hybrid laser-arc welding
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Effects of shielding gases on process stability of 10CrNi3MoV steel in hybrid laser-arc welding

机译:屏蔽气体对混合激光弧焊10Crni3mov钢的工艺稳定性的影响

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Hybrid laser-arc welding (HLAW) of 10CrNi3MoV steel was carried out with different shielding gas mixtures including 100% Ar, 5% CO2 + Ar, 10% CO2 + Ar, 15% CO2 + Ar, 20% CO2 + Ar, 25% CO2 + Ar and 100% CO2. A CMOS high speed camera and real-time electric signal data were utilized to obtain the high-speed images (HSI) and electric signals of the droplet transfer and weld pool dynamics in real time during the HLAW process. The results showed that the increase of CO2 content increased the synergetic effect, especially the energy density of laser, and improved the penetration. The electric signal and HSI results revealed that, at low CO2 content (5% CO2 + Ar, 10% CO2 + Ar), the process was unstable with spatters and the metal transfer mode was globular mode. But at medium CO2 content (15% CO2 + Ar, 20% CO2 + Ar), the process was stable with less spatters and the metal transfer mode was spray mode. Stable process and accepted sound weld were obtained using 20% CO2 + Ar, which corresponded to the welding current 200 A and welding voltage 29 V. As CO2 content in the shielding gas increased, the increase in the weld current and welding voltage deteriorated the stability of the welding process, and the transfer mode shifted to repelled transfer, leading to the formation of large spatters.
机译:混合激光弧焊10CrNi3MoV钢(HLAW)用不同的屏蔽气体混合物中进行,包括100%的Ar,5%CO 2 +的Ar,10%CO 2 +的Ar,15%CO 2 +的Ar,20%CO 2 +的Ar,25% CO 2 + Ar和100%的CO 2。一种CMOS高速摄像机和实时电信号数据进行利用时的HLAW处理,以获得高速的图像(HSI),并在实时的熔滴过渡和熔池动力学电信号。结果表明,二氧化碳含量的增加而增加的协同效果,特别是激光的能量密度,并改善了渗透。电信号和HSI结果表明,在低CO 2含量(5%CO 2 +的Ar,10%CO 2 + AR)时,过程同飞溅不稳定,金属传输模式是球形模式。但在中等CO2含量(15%CO 2 +的Ar,20%CO 2 + AR),该过程是具有较少飞溅和金属传输模式稳定喷雾模式。使用20%CO 2 +的Ar,对应于焊接电流200 A和焊接电压29的保护气体中V.作为CO2含量的增加,在焊接电流的增加,焊接电压,获得稳定的工艺和接受声焊接劣化的稳定性焊接工艺的,并且传输模式转移到排斥转移,导致大飞溅的形成。

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