Additive manufacturing methods and modelling approaches: a critical review

Методы аддитивного производства и подходы к моделированию: критический обзор
George Chryssolouris, Panagiotis Stavropoulos, Harry Bikas
2015-07-22

additive manufacturingclosed-loop controlheat and mass transfermelting and solidificationprocess modelling
Additive manufacturing is a technology rapidly expanding on a number of industrial sectors. It provides design freedom and environmental/ecological advantages. It transforms essentially design files to fully functional products. However, it is still hampered by low productivity, poor quality and uncertainty of final part mechanical properties. The root cause of undesired effects lies in the control aspects of the process. Optimization is difficult due to limited modelling approaches. Physical phenomena associated with additive manufacturing processes are complex, including melting/solidification and vaporization, heat and mass transfer etc. The goal of the current study is to map available additive manufacturing methods based on their process mechanisms, review modelling approaches based on modelling methods and identify research gaps. Later sections of the study review implications for closed-loop control of the process.
1
Additive manufacturing offers substantial design freedom and environmental advantages by converting digital design files into functional products.
2
Industrial adoption remains constrained by low productivity, poor part quality, and uncertainty in final mechanical properties.
3
The review maps additive manufacturing methods by process mechanism and evaluates modelling approaches to identify research gaps.
4
The study examines how available modelling approaches can support closed-loop additive manufacturing process control.
5
Undesired outcomes primarily originate from process-control challenges involving complex melting, solidification, vaporization, and heat- and mass-transfer phenomena.

Additive manufacturing processes (AM methods) as a class of manufacturing processes

process mechanisms, modelling approaches, and closed-loop control implications, particularly regarding productivity, quality, and final-part mechanical-property uncertainty

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2015-07-22
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George Chryssolouris
Panagiotis Stavropoulos
Harry Bikas
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