Laser shock peening (LSP) is deemed as a deep-rooted technology for stimulating compressive residual stresses below the surface of metallic elements. As a result, fatigue lifespan is improved, and the substance properties become further resistant to wear and corrosion. The LSP provides more unfailing surface treatment and a potential decrease in microstructural damage. Laser shock peening is a well-organized method measured up to the mechanical shoot peening. This kind of surface handling can be fulfilled via an intense laser pulse focused on a substantial surface in extremely shorter intervals. In this work, Hydrofluoric Acid (HF) and pure water as a coating layer were utilized as a new technique to improve the properties and to harden the...
Aluminium alloy 5083 was subjected to Laser Shock Peening both with (LSP) and without protective coa...
It has been well established that most fatigue cracks initiate from stress concentration sites found...
Laser peening without coating (LPwC) using a palmtop-sized microchip laser has improved the residual...
Laser Shock Peening (LSP) is an innovative surface treatment technique used to improve the fatigue p...
Fatigue and other failure mechanisms, such as corrosion and stress corrosion cracking, are severe pr...
Since their introduction in the 1920s, 5xxx series aluminum (Al) alloys have been widely employed fo...
The fatigue performance from pre-corroded pits was studied for laser shock peening of aluminium allo...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Laser shock peening (LSP) is an innovative surface treatment method that can result in significant i...
Laser shock processing (LSP) or laser shock peening has been proposed as a competitive alternative t...
Laser shock peening has established itself as an effective surface treatment to enhance the fatigue ...
A laser shock peening treatment with ablative layer (LSP), and one without an ablative layer (LSPwC)...
ABSTRACT Laser shock peening (LSP) is a promising surface treatment for fatigue life extension of me...
Laser shock peening (LSP) is a promising surface treatment for fatigue life extension of metallic ma...
This paper presents a novel compound strengthening method based on laser-induced peening and cavitat...
Aluminium alloy 5083 was subjected to Laser Shock Peening both with (LSP) and without protective coa...
It has been well established that most fatigue cracks initiate from stress concentration sites found...
Laser peening without coating (LPwC) using a palmtop-sized microchip laser has improved the residual...
Laser Shock Peening (LSP) is an innovative surface treatment technique used to improve the fatigue p...
Fatigue and other failure mechanisms, such as corrosion and stress corrosion cracking, are severe pr...
Since their introduction in the 1920s, 5xxx series aluminum (Al) alloys have been widely employed fo...
The fatigue performance from pre-corroded pits was studied for laser shock peening of aluminium allo...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Laser shock peening (LSP) is an innovative surface treatment method that can result in significant i...
Laser shock processing (LSP) or laser shock peening has been proposed as a competitive alternative t...
Laser shock peening has established itself as an effective surface treatment to enhance the fatigue ...
A laser shock peening treatment with ablative layer (LSP), and one without an ablative layer (LSPwC)...
ABSTRACT Laser shock peening (LSP) is a promising surface treatment for fatigue life extension of me...
Laser shock peening (LSP) is a promising surface treatment for fatigue life extension of metallic ma...
This paper presents a novel compound strengthening method based on laser-induced peening and cavitat...
Aluminium alloy 5083 was subjected to Laser Shock Peening both with (LSP) and without protective coa...
It has been well established that most fatigue cracks initiate from stress concentration sites found...
Laser peening without coating (LPwC) using a palmtop-sized microchip laser has improved the residual...