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Pacific International Conference on Applications of Lasers and Optics | 2008

Study on welding characteristics of combining laser welding and resistance seam welding joined Ti-6Al-4V lap joints

Xinge Zhang; Liqun Li; Zhenglong Lei; Yanbin Chen

Combining laser welding and resistance seam welding (LW-RSEW), lap welding of Ti-6Al-4V alloy plates with 1.4mm thickness was carried out and the welding characteristics of LW-RSEW joint were investigated. The results indicate that, compared with “V” profile of LW weld, the cross section of LW-RSEW joint is “cross” profile and the weld width at faying interface is greatly increased, which is correspond to increase the joint shear strength. The LW-RSEW joints fail in the heat affected zone (HAZ) and average tensile shear load is 21.50kN. By means of X-rays inspecting, it’s found that there is almost no porosity in the LW- RSEW joints. The mechanism of porosity elimination was analysed in detail. Furthermore, metallographic examination of the joint reveals that in the nugget the microstructure is coarse β with internally acicular morphology and the HAZ consists of a mixture of primary α and transformed β with some acicular α. Hardness of the HAZ slightly rises compared with base metal (350HV); the hardness in the nugget is highest and the peak value reaches about 425 HV due to the structure transformation to martensite.Combining laser welding and resistance seam welding (LW-RSEW), lap welding of Ti-6Al-4V alloy plates with 1.4mm thickness was carried out and the welding characteristics of LW-RSEW joint were investigated. The results indicate that, compared with “V” profile of LW weld, the cross section of LW-RSEW joint is “cross” profile and the weld width at faying interface is greatly increased, which is correspond to increase the joint shear strength. The LW-RSEW joints fail in the heat affected zone (HAZ) and average tensile shear load is 21.50kN. By means of X-rays inspecting, it’s found that there is almost no porosity in the LW- RSEW joints. The mechanism of porosity elimination was analysed in detail. Furthermore, metallographic examination of the joint reveals that in the nugget the microstructure is coarse β with internally acicular morphology and the HAZ consists of a mixture of primary α and transformed β with some acicular α. Hardness of the HAZ slightly rises compared with base metal (350HV); the hardness ...


Archive | 2012

Scanning type laser vision sensing-based narrow-gap deep-groove automatic laser multilayer welding method for thick plate

Zhenglong Lei; Yanbin Chen; Hong Chen; Liqun Li


Archive | 2011

Laser-double arc double sided compound welding method of T shaped joint

Yugang Miao; Yanbin Chen; Zhenglong Lei; Liqun Li


Archive | 2008

Ultrasound wave auxiliary laser braze (fuse) welding method

Yanbin Chen; Zhenglong Lei; Guangyu Ye; Liqun Li


Journal of Materials Processing Technology | 2012

Effects of welding velocity on the impact behavior of droplets in gas metal arc welding

J.C. Feng; Liqun Li; Yanbin Chen; Zhenglong Lei; Hao Qin; Ying Li


Archive | 2011

Middle and small power laser GMA electrical arc compound welding method appending with mechanical force

Yanbin Chen; Liqun Li; Zhenglong Lei


Archive | 2011

Laser offset welding method suitable for magnesium/steel and magnesium/titanium

Liqun Li; Caiwang Tan; Fuquan Li; Zhenglong Lei


Archive | 2008

Laser-electric resistance seam welding in-phase compound welding method of frame-covering structure

Yanbin Chen; Liqun Li; Zhenglong Lei; Wang Tao; Xinge Zhang


Archive | 2011

Laser wire filling-melt injection welding method for particle-reinforced metal based composite material

Liqun Li; Yanbin Chen; Wang Tao; Fuquan Li; Zhenglong Lei


Journal of Materials Processing Technology | 2017

Mechanism of the crack formation and suppression in laser-MAG hybrid welded 30CrMnSiA joints

Zhenglong Lei; Bingwei Li; Longchang Ni; Yuhe Yang; Sida Yang; Peipei Hu

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Yanbin Chen

Harbin Institute of Technology

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Fuquan Li

Harbin Institute of Technology

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J.C. Feng

Harbin Institute of Technology

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K.F. Zhang

Harbin Institute of Technology

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Liqun Li

Harbin Institute of Technology

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Longchang Ni

Harbin Institute of Technology

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Wang Tao

Harbin Institute of Technology

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Ying Li

Harbin Institute of Technology

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Bingwei Li

Harbin Institute of Technology

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