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Research & review articles are invited for publication in September 2026 (Vol. 28, Issue 3) || Submission: up to 28th September || Editorial decision: within 48 hrs.

THE TRANSFORMATION OF RAPID PROTOTYPING IN INDUSTRY 4.0: A SYSTEMATIC REVIEW OF CLOUD-BASED ADDITIVE MANUFACTURING

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  • THE TRANSFORMATION OF RAPID PROTOTYPING IN INDUSTRY 4.0: A SYSTEMATIC REVIEW OF CLOUD-BASED ADDITIVE MANUFACTURING

Gershom G. Mhlanga *, Klinziman Mhazi, Leroy Moyo, Abraham Muzingaye Moyo and Anelia Mkombo

Department of Industrial and Manufacturing Engineering, National University of Science and Technology (NUST), Bulawayo, Zimbabwe.
* Corresponding Author

Review Article

Global Journal of Engineering and Technology Advances, 2026, 29(01), 030–044

Article DOI: 10.30574/gjeta.2026.29.1.0269

DOI url: https://doi.org/10.30574/gjeta.2026.29.1.0269

Received on 25 August 2026; revised on 30 September 2026; accepted on 02 October 2026

Industry 4.0 changes the dynamics of how additive manufacturing (AM) is used for product development and rapid prototyping. Cloud computing, Internet of Things (IoT), cyber physical systems (CPS), artificial intelligence (AI) and machine learning (ML) and digital twins are increasingly becoming part of AM, providing enhanced connectivity, flexibility and access to manufacturing resources. However, the more technologies emerge and the greater the number of benefits that are touted, the more difficult it is to assess the extent to which cloud-based additive manufacturing (CBAM) has transformed rapid prototyping—let alone why its popularization remains stymied. This systematic review outlines the changes to rapid prototyping in the context of Industry 4.0 using CBAM. The literature published from 2016 to 2026 was retrieved from Google Scholar, Web of Science, IEEE Xplore and Emerald and screened according to the included and excluded criteria pre-designed, and reported using PRISMA 2020. The review categorises the enabling technologies based on function, data flow, consolidates the reported applications and benefits of the technologies, and identifies technical, operational, economic and organisational barriers to their adoption, specifically considering the needs of small and medium-sized enterprises (SMEs) and developing economies including Zimbabwe. The results demonstrate the potential of CBAM to provide access to manufacturing resources at distance, collaborative and iterative design, distributed manufacturing and stronger integration of digital and physical manufacturing systems. There are still major shortcomings, however, in cybersecurity, interoperability, data handling, network reliability, quality consistency and interoperability with heterogeneous systems. The evidence of technical feasibility is much greater than the evidence of long-term economic gains, industrial scalability and implementation in reality. The review thus suggests more rigorous industrial validation, shared interoperability and security rules, process-parameter knowledge-bases that can be reused and paths towards implementation that are low-cost and incremental for resource-poor manufacturers.

Cloud-based additive manufacturing; Rapid prototyping; Industry 4.0; Manufacturing-as-a-Service; Digital twin; Machine learning; SMEs; Systematic review

https://gjeta.com/sites/default/files/fulltext_pdf/GJETA-2026-0269.pdf

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Gershom G. Mhlanga, Klinziman Mhazi, Leroy Moyo, Abraham Muzingaye Moyo and Anelia Mkombo. THE TRANSFORMATION OF RAPID PROTOTYPING IN INDUSTRY 4.0: A SYSTEMATIC REVIEW OF CLOUD-BASED ADDITIVE MANUFACTURING. Global Journal of Engineering and Technology Advances, 2026, 29(01), 030–044. Article DOI: https://doi.org/10.30574/gjeta.2026.29.1.0269.

Copyright © Author(s). All rights reserved. This article is published under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution, and reproduction in any medium or format, as long as appropriate credit is given to the original author(s) and source, a link to the license is provided, and any changes made are indicated.


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