We present a versatile model for the prediction of the geometry of laser clad depositions formed by overlap of individual tracks and layers as a 2D cross-sectional model that can be used for prediction of 3D structures. The main strength of our approach lies in the ability to achieve physically sound predictions of the geometry of deposition based entirely on experimental parameters that can be easily adjusted during the deposition process. As far as applications are concerned, with our model we are able to make predictions for any number of clad tracks and also any number of layers. We present two different ways of validating our model with experimental results, i.e. using a prediction based on the first track geometry and second, also a c...
Originally issued from cladding, the LMD-p process widens the field of possibilities in terms of man...
Fused deposition modeling (FDM) is a common additive manufacturing (AM) technology able to fabricate...
One of the main current challenges in the field of additive manufacturing and directed energy deposi...
We present a versatile model for the prediction of the geometry of laser clad depositions formed by ...
In this contribution we present a comparison between laser clad experiments and model predictions of...
Based on a recently published recursive model describing the geometry of laser clad coatings and on ...
AbstractBased on a recently published recursive model describing the geometry of laser clad coatings...
A recursive model is presented for the prediction of the profile of a coating layer formed by single...
Direct laser deposition (DLD) is a promising additive technology that allows for the rapid and cheap...
AbstractThe laser cladding process is based on the generation of a melt-pool in a substrate where a ...
This paper provides a review of the current state of the art in modeling of laser direct metal depos...
Several surface engineering techniques are known that form a hard facing coating on an inexpensive s...
International audienceThe direct metal deposition (DMD) laser process is a novel technique, well ada...
International audienceDirect Laser Fabrication is a promising new manufacturing technology coming fr...
Several surface engineering techniques are known that form a hard facing coating on an inexpensive s...
Originally issued from cladding, the LMD-p process widens the field of possibilities in terms of man...
Fused deposition modeling (FDM) is a common additive manufacturing (AM) technology able to fabricate...
One of the main current challenges in the field of additive manufacturing and directed energy deposi...
We present a versatile model for the prediction of the geometry of laser clad depositions formed by ...
In this contribution we present a comparison between laser clad experiments and model predictions of...
Based on a recently published recursive model describing the geometry of laser clad coatings and on ...
AbstractBased on a recently published recursive model describing the geometry of laser clad coatings...
A recursive model is presented for the prediction of the profile of a coating layer formed by single...
Direct laser deposition (DLD) is a promising additive technology that allows for the rapid and cheap...
AbstractThe laser cladding process is based on the generation of a melt-pool in a substrate where a ...
This paper provides a review of the current state of the art in modeling of laser direct metal depos...
Several surface engineering techniques are known that form a hard facing coating on an inexpensive s...
International audienceThe direct metal deposition (DMD) laser process is a novel technique, well ada...
International audienceDirect Laser Fabrication is a promising new manufacturing technology coming fr...
Several surface engineering techniques are known that form a hard facing coating on an inexpensive s...
Originally issued from cladding, the LMD-p process widens the field of possibilities in terms of man...
Fused deposition modeling (FDM) is a common additive manufacturing (AM) technology able to fabricate...
One of the main current challenges in the field of additive manufacturing and directed energy deposi...