Laser peening without coating (LPwC) is a well-known technique to improve high-cycle fatigue properties by introducing compressive residual stress (RS) near the surface of metal components. In this study, X-ray diffraction (XRD) and flexural fatigue tests were applied to pre-cracked 12 mm thick SM490A welding structural steel specimens that were subjected to LPwC nearly 20 years ago with a pulse energy of 200 mJ, a spot diameter of 0.8 mm and a pulse density of 36 pulse/mm2. XRD revealed that the compressive RS has remained stable to date, with approximately 400–500 MPa remaining at the surface and a compressive depth of approximately 0.9 mm from the surface, which is comparable to the data measured by XRD immediately after LPwC. In the fle...
The aim of the current work was to study the effect of laser shock peening (LSP) when applied to 2‐m...
Fatigue and other failure mechanisms, such as corrosion and stress corrosion cracking, are severe pr...
The introduction of tensile residual stress has led to the induction of damage such as fatigue, corr...
Laser peening is an innovative surface enhancement technology to introduce a compressive residual st...
Residual stresses have in the past been introduced to manipulate growth rates and shapes of cracks u...
Laser peening introduces compressive residual stresses on the surfaces of various materials and is e...
Laser shock peening has established itself as an effective surface treatment to enhance the fatigue ...
Fatigue is one of the main failure mechanisms in engineering. Mechanical surface treatments are bein...
Laser peening which introduces compressive residual stresses on surfaces is effective in enhancing f...
Laser shock peening (LSP) is one of the life enhancement processes by inducing compressive residual ...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
ABSTRACT Laser peening without coating (LPwC) has been applied to water-immersed materials using a w...
A comparative study of the influence of laser shock peening without coating (LSPwC) and shot peening...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
The aim of the current work was to study the effect of laser shock peening (LSP) when applied to 2‐m...
Fatigue and other failure mechanisms, such as corrosion and stress corrosion cracking, are severe pr...
The introduction of tensile residual stress has led to the induction of damage such as fatigue, corr...
Laser peening is an innovative surface enhancement technology to introduce a compressive residual st...
Residual stresses have in the past been introduced to manipulate growth rates and shapes of cracks u...
Laser peening introduces compressive residual stresses on the surfaces of various materials and is e...
Laser shock peening has established itself as an effective surface treatment to enhance the fatigue ...
Fatigue is one of the main failure mechanisms in engineering. Mechanical surface treatments are bein...
Laser peening which introduces compressive residual stresses on surfaces is effective in enhancing f...
Laser shock peening (LSP) is one of the life enhancement processes by inducing compressive residual ...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
ABSTRACT Laser peening without coating (LPwC) has been applied to water-immersed materials using a w...
A comparative study of the influence of laser shock peening without coating (LSPwC) and shot peening...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
The aim of the current work was to study the effect of laser shock peening (LSP) when applied to 2‐m...
Fatigue and other failure mechanisms, such as corrosion and stress corrosion cracking, are severe pr...
The introduction of tensile residual stress has led to the induction of damage such as fatigue, corr...