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Abstract
Warm laser shock peening (WLSP) is a novel surface modification technology involving a combination of laser shock peening (LSP) and dynamic strain aging (DSA) technologies. Nickel-based single-crystal superalloy is one of the leading materials for aeroengine turbine blades. Hence, studying the surface modification effect of WLSP on [001]-oriented DD6 nickel-based single-crystal superalloy has a real significance in the aerospace field. Three experimental heating temperatures, 260 °C, 280 °C, and 300 °C, were selected in the vicinity of DD6 DSA temperature, and WLSP treatment was carried out on [001]-oriented DD6 specimens. Microstructure, FEM simulation of laser-induced compressive residual stress field, microhardness, and microstructural changes after the heat treatment of specimens were studied. The test results show that WLSP could generate plenty of stable dislocation structures in the impacted regions, and the effect of WLSP is positively correlated with the experimental temperature. Besides, both the WLSP-induced compressive residual stress and the microhardness in the impacted region tend to increase with the increase in WLSP temperature. The microstructure of a WLSP specimen varies at different annealing temperatures.
Details
1 Xi’an Jiaotong University, State Key Laboratory for Manufacturing System Engineering, Xi’an, China (GRID:grid.43169.39) (ISNI:0000 0001 0599 1243); Xi’an Jiaotong University, School of Mechanical Engineering, Xi’an, China (GRID:grid.43169.39) (ISNI:0000 0001 0599 1243)
2 Xi’an Jiaotong University, School of Mechanical Engineering, Xi’an, China (GRID:grid.43169.39) (ISNI:0000 0001 0599 1243)
3 Xi’an Jiaotong University, State Key Laboratory for Manufacturing System Engineering, Xi’an, China (GRID:grid.43169.39) (ISNI:0000 0001 0599 1243); Xi’an Jiaotong University, School of Mechanical Engineering, Xi’an, China (GRID:grid.43169.39) (ISNI:0000 0001 0599 1243); Xi’an Jiaotong University, Shaanxi Key Laboratory of Intelligent Robots, Xi’an, China (GRID:grid.43169.39) (ISNI:0000 0001 0599 1243)





