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Pacific International Conference on Applications of Lasers and Optics | 2008

The research on the parameter thresholds of titanium alloy laser welding

Chen Li; Gong Shuili; Yao Wei

The CO2 laser welding and YAG laser welding were conducted to investigate the effects of welding parameters on weld shape for 2.5mm thick TA15 titanium alloy in this paper. The results show that the welds present three typical shapes varying with parameters, i.e. semi-spherical weld, nail-head weld and glass-hour weld. The relationship between weld shape and parameters reveals that the mode of laser welding depends not only on laser energy density as usual, but also on heat input. When these two parameters exceed the threshold for penetration laser welding, the nail-head weld or glass-hour weld occur. It is found that the back width to surface width ratio (Rw) can be used to describe the feature of the weld shape and to evaluate the stability of full penetration laser welding for titanium alloy sheet. Based on the experiment, the Rw should be larger than 0.4 in order to get stable full penetration laser welding for 2.5mm thick TA15 titanium alloy. Considering this required Rw and requirements for perfect weld quality, the optimization window of laser power and welding speed can be obtained under the condition of constant defocus distance. The laser energy density and heat input threshold curve for stable full penetration laser welding can be similarly mapped according to the experimental data. With the threshold curve, laser energy density, heat input, laser power and welding speed can be properly selected for 2.5mm thick titanium alloy.The CO2 laser welding and YAG laser welding were conducted to investigate the effects of welding parameters on weld shape for 2.5mm thick TA15 titanium alloy in this paper. The results show that the welds present three typical shapes varying with parameters, i.e. semi-spherical weld, nail-head weld and glass-hour weld. The relationship between weld shape and parameters reveals that the mode of laser welding depends not only on laser energy density as usual, but also on heat input. When these two parameters exceed the threshold for penetration laser welding, the nail-head weld or glass-hour weld occur. It is found that the back width to surface width ratio (Rw) can be used to describe the feature of the weld shape and to evaluate the stability of full penetration laser welding for titanium alloy sheet. Based on the experiment, the Rw should be larger than 0.4 in order to get stable full penetration laser welding for 2.5mm thick TA15 titanium alloy. Considering this required Rw and requirements for perfect ...


Archive | 2006

Welding-installation integrated structural holder clamp of thin-wall member profile

Gong Shuili; Yao Wei; Chen Li; Ouyang Jie


Archive | 2005

Method of application of activator in use for laser welding titanium alloy

Gong Shuili; Chen Li; Yao Wei


Archive | 2005

Dual light beams welding method for laser welding

Gong Shuili; Chen Li; Yao Wei


Archive | 2004

Gas protector for laser welding and flush welding joint

Gong Shuili; Chen Li; Yao Wei


Archive | 2004

Gas protector for laser welding angle and welding joint

Gong Shuili; Chen Li; Yao Wei


Archive | 2013

Method for measuring temperature field in laser welding process

Duan Aiqin; Gong Shuili; Zhang Piao; Chen Xinsong; Yao Wei; Wang Bin


Archive | 2015

Titanium alloy sheet forming process based on continuous laser scanning

Wang Bin; Gong Shuili; Chen Li; Yao Wei


Archive | 2013

Multi-beam laser welding method

Wang Bin; Gong Shuili; Chen Li; Yao Wei


Archive | 2006

Two-dimensional compositive curve welding seam gas protector

Yao Wei; Gong Shuili; Chen Li; Ouyang Jie

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Wang Bin

Chinese Academy of Sciences

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