The characteristic of laser peening (LP) and shot peening (SP) was introduced in this paper, then LP and SP for titanium alloy was studied respectively, including the surface profile and residual stress and fatigue properties. The results show that there was shocked zone with the laser spot size and 10~20 µm depth on the surface of the titanium alloy after LP, the max. residual stress is about −600 MPa, which correspond to the result of SP, but the intensity of plastic deformation was much more than that of SP which only gain depression of 1~2 µm, further more, Suitable laser parameters and overlap rate can gain better roughness of surface. LP was chosen for titanium turbine blade, and there were obvious marks and no cracks on the shock zone of dual beam laser peening.
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3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication
April 16–18, 2008
Beijing, People's Republic of China
ISBN:
978-0-912035-89-5
PROCEEDINGS PAPER
Laser peening and shot peening for titanium alloy blade Available to Purchase
Cao Zi-Wen;
Cao Zi-Wen
National Key Laboratory of High Energy Density Beam Processing Technology, Beijing Aeronautical manufacturing technology Research institute
, Beijing, 100024, China
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Zou Shi-Kun;
Zou Shi-Kun
National Key Laboratory of High Energy Density Beam Processing Technology, Beijing Aeronautical manufacturing technology Research institute
, Beijing, 100024, China
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Gong Shui-Li;
Gong Shui-Li
National Key Laboratory of High Energy Density Beam Processing Technology, Beijing Aeronautical manufacturing technology Research institute
, Beijing, 100024, China
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Zhang Xiao-Bing
Zhang Xiao-Bing
National Key Laboratory of High Energy Density Beam Processing Technology, Beijing Aeronautical manufacturing technology Research institute
, Beijing, 100024, China
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Published Online:
April 01 2008
Citation
Cao Zi-Wen, Zou Shi-Kun, Gong Shui-Li, Zhang Xiao-Bing; April 16–18, 2008. "Laser peening and shot peening for titanium alloy blade." Proceedings of the 3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication. PICALO 2008: 3rd Pacific International Conference on Laser Materials Processing, Micro, Nano and Ultrafast Fabrication. Beijing, People's Republic of China. (pp. pp. 426-429). ASME. https://doi.org/10.2351/1.5057051
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