The effect of warm laser shock peening on the thermal stability of compressive residual stress and the hot corrosion resistance of Ni-based single-crystal superalloy

被引:35
作者
Tang, Zhanghan [1 ,3 ]
Dong, Xia [3 ]
Geng, Yongxiang [4 ]
Wang, Kedian [1 ,3 ]
Duan, Wenqiang [1 ,3 ]
Gao, Meng [1 ,3 ]
Mei, Xuesong [1 ,2 ,3 ]
机构
[1] Xi An Jiao Tong Univ, State Key Lab Mfg Syst Engn, Xian 710054, Peoples R China
[2] Xi An Jiao Tong Univ, Shaanxi Key Lab Intelligent Robots, Xian 710049, Peoples R China
[3] Xi An Jiao Tong Univ, Sch Mech Engn, Xian 710049, Peoples R China
[4] Nanchang Hangkong Univ, Sch Mat Sci & Engn, Nanchang 330063, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Warm laser shock peening; Thermal stability of compressive residual stress; Hot corrosion resistance; Ni-based single-crystal superalloy; ALUMINUM-ALLOY; MECHANICAL-PROPERTIES; HIGH-TEMPERATURE; LATTICE MISFIT; RE SEGREGATION; MICROSTRUCTURE; EVOLUTION; BEHAVIOR; CREEP; DISLOCATIONS;
D O I
10.1016/j.optlastec.2021.107556
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Warm laser shock peening (WLSP) is a new surface modification technique combining laser shock peening (LSP) and dynamic strain aging (DSA). In order to investigate the surface modification of Ni-based single-crystal superalloy by WLSP and the mechanism of action, and to compare LSP, WLSP, and LSP experiments were conducted on DD6 (Chinese Brand) samples. After that, the samples were subjected to heat treatment and hot corrosion experiments, respectively. The samples were characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), and field emission transmission electron microscopy (FE-TEM) to obtain the deformation and strengthening mechanisms of WLSP and LSP on the material. In addition, the experimental results were analyzed to obtain the improvement mechanism of WLSP on the thermal stability of compressive residual stress and the hot corrosion resistance of the samples. To summarize the experimental results, we obtained that the near-surface dislocation distribution, dislocation density, thermal stability of compressive residual stress, and hot corrosion resistance of the material all tend to improve with increasing temperature for the WLSP-treated samples.
引用
收藏
页数:14
相关论文
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