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Effect of shot peening on hydrogen embrittlement of high strength steel
Authors:Xin-feng Li  Jin Zhang  Ming-ming Ma  Xiao-long Song
Affiliation:1. State Key Laboratory for Mechanical Behavior of Materials, Xi’an Jiaotong University, Xi’an 710049, China;2. Department of Geosciences, State University of New York, Stony Brook, New York 11794-2100, USA;3. Department of Heat Treatment and Surface Treatment, AVIC Aircraft Co., Ltd. Xi’an Break Branch, Xingping 713106, China
Abstract:The effect of shot peening (SP) on hydrogen embrittlement of high strength steel was investigated by electrochemical hydrogen charging, slow strain rate tensile tests, and hydrogen permeation tests. Microstructure observation, microhardness, and X-ray diffraction re-sidual stress studies were also conducted on the steel. The results show that the shot peening specimens exhibit a higher resistance to hydro-gen embrittlement in comparison with the no shot peening (NSP) specimens under the same hydrogen-charging current density. In addition, SP treatment sharply decreases the apparent hydrogen diffusivity and increases the subsurface hydrogen concentration. These findings are at-tributed to the changes in microstructure and compressive residual stress in the surface layer by SP. Scanning electron microscope fracto-graphs reveal that the fracture surface of the NSP specimen exhibits the intergranular and quasi-cleavage mixed fracture modes, whereas the SP specimen shows only the quasi-cleavage fractures under the same hydrogen charging conditions, implying that the SP treatment delays the onset of intergranular fracture.
Keywords:high strength steel  shot peening  hydrogen embrittlement  cracking  fracture  inclusions
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