The prerequisite for exploiting the full potential of additive manufacturing (AM) is the rapid and cost-effective fabrication of defect-free components. However, each newly processed material usually requires the identification of the optimal parameter set, a cost and time-consuming process, mostly conducted by trial and error. Here, an optimization strategy based on artificial intelligence (AI) is developed for predicting the density of additively manufactured Ti-5Al-5V-5Mo-3Cr components from experimental data. The present approach opens the way to a faster identification of the optimum set of processing parameters via AI. (C) 2020 Elsevier B.V. All rights reserved.11Nsciescopu
This paper proposes a novel method to impart intelligence to metal parts using additive manufacturin...
Artificial intelligence and additive manufacturing are primary drivers of Industry 4.0, which is res...
<p>Manufacturing parts with target properties and quality in Laser-Based Additive Manufacturing (LBA...
Laser powder-bed fusion (LPBF) process, as one of the most widely used technologies of additive manu...
Additive manufacturing (AM) flourished in the 1980s and it involves the process of making objects la...
Laser-based powder-bed fusion (L-PBF) is a widely used additive manufacturing technology that contai...
In this Article, the targeted adjustment of the relative density of laser additive manufactured comp...
Laser Powder Bed Fusion is a type of additive manufacturing of metal parts that uses fine metal powd...
It is well known that the processing parameters of selective laser melting (SLM) highly influence me...
Known from the beginning of the eighties, additive manufacturing (AM) was seen as an alternative to ...
Additively manufactured nitinol enables the design and rapid prototyping of the shape memory alloy ...
In addition to prototyping, Powder Bed Fusion (PBF) AM processes have lately been more widely used t...
This study aims to develop mathematical models to improve multi-performance metrics, such as relativ...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
In situations requiring high levels of customization and limited production volumes, additive manufa...
This paper proposes a novel method to impart intelligence to metal parts using additive manufacturin...
Artificial intelligence and additive manufacturing are primary drivers of Industry 4.0, which is res...
<p>Manufacturing parts with target properties and quality in Laser-Based Additive Manufacturing (LBA...
Laser powder-bed fusion (LPBF) process, as one of the most widely used technologies of additive manu...
Additive manufacturing (AM) flourished in the 1980s and it involves the process of making objects la...
Laser-based powder-bed fusion (L-PBF) is a widely used additive manufacturing technology that contai...
In this Article, the targeted adjustment of the relative density of laser additive manufactured comp...
Laser Powder Bed Fusion is a type of additive manufacturing of metal parts that uses fine metal powd...
It is well known that the processing parameters of selective laser melting (SLM) highly influence me...
Known from the beginning of the eighties, additive manufacturing (AM) was seen as an alternative to ...
Additively manufactured nitinol enables the design and rapid prototyping of the shape memory alloy ...
In addition to prototyping, Powder Bed Fusion (PBF) AM processes have lately been more widely used t...
This study aims to develop mathematical models to improve multi-performance metrics, such as relativ...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
In situations requiring high levels of customization and limited production volumes, additive manufa...
This paper proposes a novel method to impart intelligence to metal parts using additive manufacturin...
Artificial intelligence and additive manufacturing are primary drivers of Industry 4.0, which is res...
<p>Manufacturing parts with target properties and quality in Laser-Based Additive Manufacturing (LBA...