The aim of the study was to investigate the effect of laser shock peening (LSP) on surface topography evolution of metallic targets. Samples manufactured by a Ni-based single crystal superalloy with polished finish were treated by LSP, and the surface topographies before and after LSP were examined by non-contact White-Light Interferometer (WLI). Results showed the following three aspects: (a) By taking advantage of WLI, the shrinkage porosities and the interdendritic structures were observed simultaneously. (b) With the increasing impact times, the round pit induced by laser shock became deeper. (c) The nano-scale surface reliefs were found on the bottom of round pit induced by LSP, and the specific plastic flow of metallic materials under...
The surface of 20CrMnTi steel was strengthened by the square-spot laser shock peening(LSP) with 25J ...
Laser shock peening (LSP), as an innovative surface treatment technology, can effectively improve fa...
A striking phenomenon is found that local plastic deformations, with an opposite direction to the ex...
The aim of the study was to investigate the effect of laser shock peening (LSP) on surface topograph...
Surface topography and microhardness of a Ni-based single crystal superalloy subjected to laser shoc...
Surface topography of an upsetting wrought superalloy processed by laser shock peening was observed ...
The single crystal superalloy SRR99 experimental samples were single point treated by laser shock pe...
Nanoindention tests and SEM microstructure observations were conducted on a single crystal nickel ba...
This investigation focused on the tensile deformation behavior of a single crystal nickel-base super...
Nickel superalloys are strong, tough metallic materials, that are widely used in heavy duty machiner...
Laser shock processing (LSP) is a surface hardening technology by using plasma shock waves, which ca...
The so-called “laser peening” treatment based on laser shock processing has been developed to improv...
Laser shock peening (LSP), a surface modification technique, is promising to enhance the strength an...
Laser shock peening (LSP), as an innovative surface treatment technology, can effectively improve fa...
Surface laser texturing is used to ensure mechanical anchoring and strengthen adhesion between the i...
The surface of 20CrMnTi steel was strengthened by the square-spot laser shock peening(LSP) with 25J ...
Laser shock peening (LSP), as an innovative surface treatment technology, can effectively improve fa...
A striking phenomenon is found that local plastic deformations, with an opposite direction to the ex...
The aim of the study was to investigate the effect of laser shock peening (LSP) on surface topograph...
Surface topography and microhardness of a Ni-based single crystal superalloy subjected to laser shoc...
Surface topography of an upsetting wrought superalloy processed by laser shock peening was observed ...
The single crystal superalloy SRR99 experimental samples were single point treated by laser shock pe...
Nanoindention tests and SEM microstructure observations were conducted on a single crystal nickel ba...
This investigation focused on the tensile deformation behavior of a single crystal nickel-base super...
Nickel superalloys are strong, tough metallic materials, that are widely used in heavy duty machiner...
Laser shock processing (LSP) is a surface hardening technology by using plasma shock waves, which ca...
The so-called “laser peening” treatment based on laser shock processing has been developed to improv...
Laser shock peening (LSP), a surface modification technique, is promising to enhance the strength an...
Laser shock peening (LSP), as an innovative surface treatment technology, can effectively improve fa...
Surface laser texturing is used to ensure mechanical anchoring and strengthen adhesion between the i...
The surface of 20CrMnTi steel was strengthened by the square-spot laser shock peening(LSP) with 25J ...
Laser shock peening (LSP), as an innovative surface treatment technology, can effectively improve fa...
A striking phenomenon is found that local plastic deformations, with an opposite direction to the ex...