首页> 外文会议>International Conference on Advanced Engineering Materials and Technology >The Influence of the type and pressure of shielding gas on the porosity formation for CO_2 Laser Welding of TA15DUAN Ai Qin GONG Shui LiLaboratory of Science and Technology on Power Beam Processes, BAMTRI, Beijing, China
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The Influence of the type and pressure of shielding gas on the porosity formation for CO_2 Laser Welding of TA15DUAN Ai Qin GONG Shui LiLaboratory of Science and Technology on Power Beam Processes, BAMTRI, Beijing, China

机译:屏蔽气体对TA15duan AI秦荣水水蛭LILABORABORATOMENTIA,屏蔽气体对CO_2激光焊接孔隙形成的影响。

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摘要

Many studies have shown that during laser welding, shielding gases play a key role in many aspects. In this paper, a series of contrast experiments about CO_2 laser welding of TA15 Ti-alloy were completed by using He and Ar as shielding for different pressure, respectively. The experiments results reveal that the porosities in the weld have strong relation with weld penetration, and the shielding gas have great influences on the weld penetration. So the porosities mainly form in the center of welds which are under critical penetration and lack of penetration, and have no direct relation with the type and pressure of shielding gas.From the contrast images of penetrating process, it is known that when He as shielding gas, the sizes of keyholes on the back welds are quite larger than the sizes when Ar. This means more vapor erupting from bottom keyhole and porosities not easy to form. At the same pressure, the opening times of keyholes when He as shielding gas are longer than the times when Ar. Long opening times of keyholes make the shielding gas within keyhole not easy to be involved into the molten pool and form the porosities.
机译:许多研究表明,在激光焊接期间,屏蔽气体在许多方面发挥着关键作用。在本文中,通过使用He和Ar作为不同压力的屏蔽完成了Ta15 Ti合金的Co_2激光焊接的一系列对比试验。实验结果表明,焊缝中的孔隙率与焊接渗透有很强的关系,屏蔽气体对焊接穿透性有很大影响。因此,孔隙率主要形成焊缝中心,这在临界穿透和缺乏渗透率下,与屏蔽气体的类型和压力没有直接关系。从渗透过程的对比图像中,众所周知,当他作为屏蔽时气体,背部焊缝上的钥匙孔的尺寸比AR时的尺寸大得多。这意味着从底部钥匙孔和孔隙率爆发的蒸气不易形成。在相同的压力下,当屏蔽气体时,钥匙孔的打开时间比AR的时间长。 Keyholes的长距离开放时间使锁孔内的屏蔽气体不易涉及熔池并形成孔隙座。

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