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Frontiers of Mechanical Engineering >> 2007, Volume 2, Issue 4 doi: 10.1007/s11465-007-0083-x

Effects on mechanical properties in electron beam welding of TC4 alloy by laser shock processing

1.School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China; 2.Beijing Aeronautical Manufacturing Technology Research Institute, Beijing 100024, China;

Available online: 2007-12-05

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Abstract

The surface of TC4 titanium alloy welding line by electron beam welding (EBW) was processed by high power Q-switched and repetition-rate Nd: glass laser. Effects of laser power and spot diameter on residual stress and micro-hardness of the TC4 alloy welding line by laser shock processing (LSP) have been analyzed. Results show that residual stresses almost do not change as laser power is 45.9 J, spot diameter is φ9 mm; While laser power is 45.9 J, spot diameter less than φ3 mm, the distribution of residual stress in welding line occurs obvious variation, which residual stress increase obviously with spot diameter decrease. When power density is bigger than 1.8×10 W/cm, residual stresses of electron beam welding line occur change by LSP, which improve obviously residual stress distribution; while laser power is bigger than 1.2×10 W/cm, the surface micro-hardness of electron beam welding line occurs change by LSP, which improve obviously micro-hardness distribution. Mechanical properties of TC4 titanium alloy welding line will be improved by LSP, which provides experimental foundation for further controlling the distributions of residual stress and micro-hardness during laser shock processing.

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