Low-cycle Fatigue Behavior of Ni-based Superalloy GH586 with Laser Shock Processing

被引:3
作者
曹将栋 [1 ,2 ]
ZHANG Junsong [1 ]
花银群 [1 ]
RONG Zhen [1 ]
CHEN Ruifang [3 ]
YE Yunxia [3 ]
机构
[1] School of Material Science and Engineering, Jiangsu University
[2] Mechanical and Electrical Department,Nantong Shipping College
[3] School of Mechanical Engineering, Jiangsu University
关键词
laser shock processing; Ni-based superalloy; fatigue fracture; microstructure;
D O I
暂无
中图分类号
TG132.3 [特种热性质合金]; TG665 [光能加工设备及其加工];
学科分类号
080502 ; 080201 ;
摘要
Low-cycle fatigue behavior of Ni-based superalloy GH586 with laser shock processing(LSP) was investigated. The residual stress of the specimens treated with LSP was assessed by X-ray diffraction method. The microstructure and fracture morphology were characterized by using an optical microscope(OM), a scanning electron microscope(SEM), and a transmission electron microscope(TEM). The results indicated that the maximum residual compressive stress was at about 1 mm from the shocking spot center, where the residual compressive stress was slightly lower. High density tangling dislocations, dislocation walls, and dislocation cells in the microstructure of the specimens treated with LSP effectively prevented fatigue cracks propagation. The fatigue life was roughly twice as long as that of the specimens without LSP. The fatigue crack initiation(FCI) in specimens treated with LSP was observed in the lateral section and the subsurface simultaneously. The fatigue striation in the fracture treated with LSP was narrower than that in the untreated specimens. Moreover, dimples with tear ridges were found in the fatigued zones of the LSP treated specimens, which would be caused by severe plastic deformation.
引用
收藏
页码:1186 / 1192
页数:7
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