Simulations of laser-based directed energy deposition of metals have received increasing interest aimed at reducing the experimental effort to select the proper processing condition for the repair or overhaul of actual components. One of the main issues to be addressed is the evaluation of the residual stress, which may lead to part failure under nominal loading. In this frame and specifically relating to aluminum alloys, few works have been developed and validated. This lack of knowledge is addressed in this paper: namely, the proper approach to simulate the activation of the deposited metal is discussed in case of single deposition and is shifted to a case of multiple depositions over a substrate. The validation of the predicted residual ...
In order to improve that quality of sample and decrease the stress during process, it is of great im...
International audienceRecently, a fast macroscopic and semi-analytical thermal analysis of Laser Met...
Laser material deposition based restoration of high-value components can be a revolutionary technolo...
Simulations of laser-based directed energy deposition of metals have received increasing interest ai...
AbstractLaser shock processing is a recently developed surface treatment designed to improve the mec...
Laser Beam Melting (LBM) and Additive Metal Deposition (AMD) offer many advantages such as high free...
The focus of the current work is to predict and validate residual stresses developed during Laser Me...
One of the main current challenges in the field of additive manufacturing and directed energy deposi...
This paper reports a study into the effect of laser pulse length and duty cycle on the residual stre...
This thesis is an attempt towards a methodology of finite element analysis (FEA) for the prediction ...
The residual stress fields generated within a laser deposition metal component or added feature have...
Laser direct energy deposition (DED) is an advanced additive manufacturing technology, which can pro...
Laser shock processing is a recently developed surface treatment designed to improve the mechanical ...
Laser shock processing (LSP) or laser shock peening is a new technique for strengthening metals. Thi...
Laser metal deposition (LMD) process has been widely used in many industrial applications such as au...
In order to improve that quality of sample and decrease the stress during process, it is of great im...
International audienceRecently, a fast macroscopic and semi-analytical thermal analysis of Laser Met...
Laser material deposition based restoration of high-value components can be a revolutionary technolo...
Simulations of laser-based directed energy deposition of metals have received increasing interest ai...
AbstractLaser shock processing is a recently developed surface treatment designed to improve the mec...
Laser Beam Melting (LBM) and Additive Metal Deposition (AMD) offer many advantages such as high free...
The focus of the current work is to predict and validate residual stresses developed during Laser Me...
One of the main current challenges in the field of additive manufacturing and directed energy deposi...
This paper reports a study into the effect of laser pulse length and duty cycle on the residual stre...
This thesis is an attempt towards a methodology of finite element analysis (FEA) for the prediction ...
The residual stress fields generated within a laser deposition metal component or added feature have...
Laser direct energy deposition (DED) is an advanced additive manufacturing technology, which can pro...
Laser shock processing is a recently developed surface treatment designed to improve the mechanical ...
Laser shock processing (LSP) or laser shock peening is a new technique for strengthening metals. Thi...
Laser metal deposition (LMD) process has been widely used in many industrial applications such as au...
In order to improve that quality of sample and decrease the stress during process, it is of great im...
International audienceRecently, a fast macroscopic and semi-analytical thermal analysis of Laser Met...
Laser material deposition based restoration of high-value components can be a revolutionary technolo...