In order to enhance the microstructure and mechanical properties of additively manufactured metal parts, the application of ultrasonic impact treatment (UIT) after the additive manufacturing process is introduced as a means to modulate and optimize the material's microstructure and properties. This study systematically investigates the effect of UIT on the distribution of residual stresses in CrCoNi medium entropy alloy (CrCoNi-MEA) through numerical simulation. A suitable finite element model and boundary conditions are established to simulate the UIT assisted laser DED process. The reliability of the finite element model is verified by XRD residual test results and EBSD observation results. The numerical simulation results shows that the ...
Laser directed energy deposition (DED) is an innovative additive manufacturing technology with treme...
This thesis is an attempt towards a methodology of finite element analysis (FEA) for the prediction ...
This study is focused on the prediction of residual stresses and microstructure development of steel...
Ultrasonic peening treatment (UPT) has been proved to be an effective way of improving residual stre...
For large-scale selective laser melting (SLM) additive manufacturing technology, three main problems...
In this paper, CrCoNi medium-entropy alloy coatings were prepared by laser cladding process, and ult...
AbstractLaser shock processing is a recently developed surface treatment designed to improve the mec...
This study is devoted to the investigation of residual stresses distribution (RSD) in a TC4 sample t...
Laser direct energy deposition (DED) is an advanced additive manufacturing technology, which can pro...
Laser shock processing (LSP) is a new surface modification technology that can improve mechanical pr...
Laser shock peening (LSP) treatment of a metal surface is proving to be superior to conventional tre...
Additive manufacturing (AM) offers many advantages for the mechanical design of metal components. Ho...
Laser shock processing is a recently developed surface treatment designed to improve the mechanical ...
Laser shock peening (LSP) is an innovative surface treatment technique successfully applied to impro...
Simulations of laser-based directed energy deposition of metals have received increasing interest ai...
Laser directed energy deposition (DED) is an innovative additive manufacturing technology with treme...
This thesis is an attempt towards a methodology of finite element analysis (FEA) for the prediction ...
This study is focused on the prediction of residual stresses and microstructure development of steel...
Ultrasonic peening treatment (UPT) has been proved to be an effective way of improving residual stre...
For large-scale selective laser melting (SLM) additive manufacturing technology, three main problems...
In this paper, CrCoNi medium-entropy alloy coatings were prepared by laser cladding process, and ult...
AbstractLaser shock processing is a recently developed surface treatment designed to improve the mec...
This study is devoted to the investigation of residual stresses distribution (RSD) in a TC4 sample t...
Laser direct energy deposition (DED) is an advanced additive manufacturing technology, which can pro...
Laser shock processing (LSP) is a new surface modification technology that can improve mechanical pr...
Laser shock peening (LSP) treatment of a metal surface is proving to be superior to conventional tre...
Additive manufacturing (AM) offers many advantages for the mechanical design of metal components. Ho...
Laser shock processing is a recently developed surface treatment designed to improve the mechanical ...
Laser shock peening (LSP) is an innovative surface treatment technique successfully applied to impro...
Simulations of laser-based directed energy deposition of metals have received increasing interest ai...
Laser directed energy deposition (DED) is an innovative additive manufacturing technology with treme...
This thesis is an attempt towards a methodology of finite element analysis (FEA) for the prediction ...
This study is focused on the prediction of residual stresses and microstructure development of steel...