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The role of robotics in additive manufacturing: review of the AM processes and introduction of an intelligent system

J. Norberto Pires (CEMMPRE, Department of Mechanical Engineering, University of Coimbra, Coimbra, Portugal)
Amin S. Azar (Effee-Induction AS, Ålesund, Norway, and 3D-Components AS, Oslo, Norway)
Filipe Nogueira (CEMMPRE, Department of Mechanical Engineering, University of Coimbra, Coimbra, Portugal and CDRSP, Polytechnic Institute of Leiria, Leiria, Portugal)
Carlos Ye Zhu (CEMMPRE, Department of Mechanical Engineering, University of Coimbra, Coimbra, Portugal)
Ricardo Branco (CEMMPRE, Department of Mechanical Engineering, University of Coimbra, Coimbra, Portugal)
Trayana Tankova (ISISE, Department of Civil Engineering, University of Coimbra, Coimbra, Portugal)

Industrial Robot

ISSN: 0143-991x

Article publication date: 28 December 2021

Issue publication date: 11 February 2022

627

Abstract

Purpose

Additive manufacturing (AM) is a rapidly evolving manufacturing process, which refers to a set of technologies that add materials layer-by-layer to create functional components. AM technologies have received an enormous attention from both academia and industry, and they are being successfully used in various applications, such as rapid prototyping, tooling, direct manufacturing and repair, among others. AM does not necessarily imply building parts, as it also refers to innovation in materials, system and part designs, novel combination of properties and interplay between systems and materials. The most exciting features of AM are related to the development of radically new systems and materials that can be used in advanced products with the aim of reducing costs, manufacturing difficulties, weight, waste and energy consumption. It is essential to develop an advanced production system that assists the user through the process, from the computer-aided design model to functional components. The challenges faced in the research and development and operational phase of producing those parts include requiring the capacity to simulate and observe the building process and, more importantly, being able to introduce the production changes in a real-time fashion. This paper aims to review the role of robotics in various AM technologies to underline its importance, followed by an introduction of a novel and intelligent system for directed energy deposition (DED) technology.

Design/methodology/approach

AM presents intrinsic advantages when compared to the conventional processes. Nevertheless, its industrial integration remains as a challenge due to equipment and process complexities. DED technologies are among the most sophisticated concepts that have the potential of transforming the current material processing practices.

Findings

The objective of this paper is identifying the fundamental features of an intelligent DED platform, capable of handling the science and operational aspects of the advanced AM applications. Consequently, we introduce and discuss a novel robotic AM system, designed for processing metals and alloys such as aluminium alloys, high-strength steels, stainless steels, titanium alloys, magnesium alloys, nickel-based superalloys and other metallic alloys for various applications. A few demonstrators are presented and briefly discussed, to present the usefulness of the introduced system and underlying concept. The main design objective of the presented intelligent robotic AM system is to implement a design-and-produce strategy. This means that the system should allow the user to focus on the knowledge-based tasks, e.g. the tasks of designing the part, material selection, simulating the deposition process and anticipating the metallurgical properties of the final part, as the rest would be handled automatically.

Research limitations/implications

This paper reviews a few AM technologies, where robotics is a central part of the process, such as vat photopolymerization, material jetting, binder jetting, material extrusion, powder bed fusion, DED and sheet lamination. This paper aims to influence the development of robot-based AM systems for industrial applications such as part production, automotive, medical, aerospace and defence sectors.

Originality/value

The presented intelligent system is an original development that is designed and built by the co-authors J. Norberto Pires, Amin S. Azar and Trayana Tankova.

Keywords

Acknowledgements

With authors deepest and heartfelt sorrow for the premature decease of Prof. Joachim Norberto Pires on 10th of August 2021, the fellow authors of his last work dedicate it to his family.

Citation

Pires, J.N., Azar, A.S., Nogueira, F., Zhu, C.Y., Branco, R. and Tankova, T. (2022), "The role of robotics in additive manufacturing: review of the AM processes and introduction of an intelligent system", Industrial Robot, Vol. 49 No. 2, pp. 311-331. https://doi.org/10.1108/IR-06-2021-0110

Publisher

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Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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