Nanosecond laser shock peening (NLSP) has been proved to be an effective way to enhance the mechanical properties of metallic components through modifying the surface microstructures. However, the micromechanism of structure and property fluctuations induced by shock wave propagation is still limited due to the intrinsic defects in crystalline materials. Here, NLSP treatment has been performed into the Ti-metallic glasses. Owing to the absence of dislocations, grain boundary and phase segregation, the structural signals caused by the shock wave could come into sight. According to grid nanoindentation results, the shock-affected region can be divided into three sections: (I) the rapid softening region, (II) the recovery region and (III) the ...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
The relationship between residual stress and microstructure evolution during laser shock peening (LS...
Laser processing is a versatile tool for applications in the field of metallic glasses (MGs). Previo...
Nanosecond laser shock peening (NLSP) has been proved to be an effective way to enhance the mechanic...
The structural and mechanical responses of Ti-based and Zr-based metallic glasses (MGs) treated by t...
The effect of laser shock peening (LSP) on mechanical properties of Ti-based bulk metallic glass (BM...
The micromechanical properties of Zr-based metallic glass (MG) induced by laser shock peening (LSP) ...
In this paper, laser shock peening (LSP) treatment was performed on Zr35Ti30Cu10Ni5Be20 bulk metalli...
Laser shock peening (LSP) has been shown to be an effective technique to improve the plasticity of m...
Laser shock peening is a promising effective approach for improving mechanical properties of metalli...
Laser shock peening (LSP) is an important material surface strengthening technique that uses laserin...
Laser shock peening (LSP) with nanosecond or femtosecond laser pulses is applied to improve the mech...
Since its invention in the late 1960s, and the pioneering work on metal strengthening in USA during ...
AbstractA detailed analysis has been conducted of Ti–6Al–4V processed by metallic shot peening and l...
Laser shock peening is promising surface treatment technique to improve the mechanical properties of...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
The relationship between residual stress and microstructure evolution during laser shock peening (LS...
Laser processing is a versatile tool for applications in the field of metallic glasses (MGs). Previo...
Nanosecond laser shock peening (NLSP) has been proved to be an effective way to enhance the mechanic...
The structural and mechanical responses of Ti-based and Zr-based metallic glasses (MGs) treated by t...
The effect of laser shock peening (LSP) on mechanical properties of Ti-based bulk metallic glass (BM...
The micromechanical properties of Zr-based metallic glass (MG) induced by laser shock peening (LSP) ...
In this paper, laser shock peening (LSP) treatment was performed on Zr35Ti30Cu10Ni5Be20 bulk metalli...
Laser shock peening (LSP) has been shown to be an effective technique to improve the plasticity of m...
Laser shock peening is a promising effective approach for improving mechanical properties of metalli...
Laser shock peening (LSP) is an important material surface strengthening technique that uses laserin...
Laser shock peening (LSP) with nanosecond or femtosecond laser pulses is applied to improve the mech...
Since its invention in the late 1960s, and the pioneering work on metal strengthening in USA during ...
AbstractA detailed analysis has been conducted of Ti–6Al–4V processed by metallic shot peening and l...
Laser shock peening is promising surface treatment technique to improve the mechanical properties of...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
The relationship between residual stress and microstructure evolution during laser shock peening (LS...
Laser processing is a versatile tool for applications in the field of metallic glasses (MGs). Previo...