阴极
材料科学
喷射(流体)
激光器
蒸发
沉积(地质)
真空电弧
钛
合金
气体保护金属极电弧焊
复合材料
冶金
分析化学(期刊)
光学
化学
机械
热力学
焊接
热影响区
古生物学
物理
沉积物
物理化学
色谱法
生物
作者
Xiao Xiao,Chi Zhang,Dongsheng Wu,Hisaya Komen,Junfeng Gou,Yongkang Zhang,Keke Zhang,Shigeaki Uchida,Manabu Tanaka
标识
DOI:10.1080/17452759.2024.2384659
摘要
A hybrid laser–GMAW-based directed energy deposition (DED) was developed to stabilise the cathode jet and droplet transfer in DED of Ti alloy. High-speed photography, spectroscopic diagnostic, theoretical calculation, and numerical simulation were employed to investigate the stabilising mechanisms. At a high laser energy density, the highest temperature of the molten pool was located in the laser-irradiated zone, generating a stable cathode jet. Ti atoms easily ionised into Ti ions at high temperatures (>8200 K); therefore, the cathode jet was primarily composed of Ti ions. The laser-induced metal vapour attracted and contracted the arc, resulting in an increase in the arc temperature, and strong evaporation near the wire during the peak-current stage. Therefore, the distribution areas of Ti I and Ti II were enlarged. Introducing the laser inhibited the obstructive effect of the cathode jet on the droplet, thereby enhancing the stability of droplet transfer.
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