Advancing Decarbonization Through 3D Printed Concrete Formworks (2025-02)¶
, ,
Journal Article - Energy and Buildings, No. 115444
Abstract
3D printing technologies are innovating several industrial fields for their ability to produce complex shapes, reduce material use and obtain high-performance structures. Among the possible applications of 3D printing in the civil construction sector, manufacturing formwork for concrete casting is a promising solution for producing thin-walled and complex structures. Given the increasing interest and numerous applications being developed, comprehensive studies on the sustainability of 3D-printed concrete formwork are required to improve the processes and drive low-carbon construction practices. In this context, the present study provides for the first time an evaluation of the environmental and economic sustainability of concrete structures achieved using 3D printed formwork. The research investigates the influence of various factors such as: i) geometry complexity, ii) printing technology (Fused Deposition Modelling and Material Jetting), iii) process parameters, iv) raw materials (PLA, ABS, PVA, Geopolymers, Cements, Clay) v) machines kinematic systems and vi) End of Life alternatives. To perform such an investigation, a parametric CAD model was developed to define structure geometry; furthermore, Life Cycle Assessment and Life Cycle Costing methodologies were applied to calculate the impacts and cost of the different alternatives. The results showed that a proper choice of the combination of geometry, technology, material, and process parameters is crucial for reducing the carbonization-related impacts associated with 3D-printed formwork production. In addition, reuse and recycling of the formworks cut overall impacts, making 3D printing a sustainable alternative to traditional production processes while allowing greater design freedom.
¶
35 References
- Abdalla Hadeer, Fattah Kazi, Abdallah Mohamed, Tamimi Adil (2021-10)
Environmental Footprint and Economics of a Full-Scale 3D Printed House - Alhumayani Hashem, Gomaa Mohamed, Soebarto Veronica, Jabi Wassim (2020-06)
Environmental Assessment of Large-Scale 3D Printing in Construction:
A Comparative Study between Cob and Concrete - Anton Ana-Maria, Reiter Lex, Wangler Timothy, Frangez Valens et al. (2020-12)
A 3D Concrete Printing Prefabrication Platform for Bespoke Columns - Bianchi Iacopo, Volpe Stelladriana, Fiorito Francesco, Forcellese Archimede et al. (2024-01)
Life Cycle Assessment of Building Envelopes Manufactured Through Different 3D Printing Technologies - Bong Shin, Xia Ming, Nematollahi Behzad, Shi Caijun (2021-04)
Ambient Temperature Cured ‘Just-Add-Water’ Geopolymer for 3D Concrete Printing Applications - Bos Freek, Menna Costantino, Pradena Mauricio, Kreiger Eric et al. (2022-03)
The Realities of Additively Manufactured Concrete Structures in Practice - Burger Joris, Lloret-Fritschi Ena, Akerman Marc, Schwendemann Daniel et al. (2023-11)
Circular Formwork:
Recycling of 3D Printed Thermoplastic Formwork for Concrete - Burger Joris, Lloret-Fritschi Ena, Scotto Fabio, Demoulin Thibault et al. (2020-04)
Eggshell:
Ultra-Thin Three-Dimensional Printed Formwork for Concrete Structures - Chen Yidong, Zhang Yunsheng, Pang Bo, Liu Zhiyong et al. (2021-05)
Extrusion-Based 3D Printing Concrete with Coarse Aggregate:
Printability and Direction-Dependent Mechanical Performance - Cutajar Sacha, Dielemans Gido, Krakovská Ema, Dorresteijn Evelien et al. (2024-04)
Up-Scaling Earth Formworks:
3D Printing-Strategies for Material-Optimized Reinforced Concrete Structures - Gardiner James, Janssen Steven (2014-05)
FreeFab:
Development of a Construction-Scale Robotic Formwork 3D Printer - Gaudillière-Jami Nadja, Duballet Romain, Bouyssou Charles, Mallet Alban et al. (2018-09)
Large-Scale Additive Manufacturing of Ultra-High-Performance Concrete of Integrated Formwork for Truss-Shaped Pillars - Gebhard Lukas, Burger Joris, Mata-Falcón Jaime, Lloret-Fritschi Ena et al. (2022-03)
Towards Efficient Concrete Structures with Ultra-Thin 3D Printed Formwork:
Exploring Reinforcement-Strategies and Optimization - Gosselin Clément, Duballet Romain, Roux Philippe, Gaudillière-Jami Nadja et al. (2016-03)
Large-Scale 3D Printing of Ultra-High-Performance Concrete:
A New Processing Route for Architects and Builders - Graser Konrad, Kahlert Aniko, Hall Daniel (2021-10)
DFAB HOUSE:
Implications of a Building-Scale Demonstrator for Adoption of Digital Fabrication in AEC - Jipa Mihail-Andrei, Bernhard Mathias, Dillenburger Benjamin (2017-11)
Submillimetre Formwork:
3D Printed Plastic Formwork for Concrete Elements - Jipa Mihail-Andrei, Giacomarra Federico, Giesecke Rena, Chousou Georgia et al. (2019-06)
3D Printed Formwork for Bespoke Concrete Stairs - Jipa Mihail-Andrei, Reiter Lex, Flatt Robert, Dillenburger Benjamin (2022-07)
Environmental Stress Cracking of 3D Printed Polymers Exposed to Concrete - Liu Siyu, Lu Bing, Li Hongliang, Pan Zehua et al. (2022-03)
A Comparative Study on Environmental Performance of 3D Printing and Conventional Casting of Concrete Products with Industrial Wastes - Madrid Javier, Ortega Guillermo, Gorostiza Carabaño Javier, Olsson Nils et al. (2023-02)
3D Claying:
3D Printing and Recycling Clay - Mozaffari Salma, Bruce Mackenzie, Clune Gabrielle, Xie Ruxin et al. (2023-06)
Digital Design and Fabrication of Clay Formwork for Concrete Casting - Naboni Roberto, Breseghello Luca (2020-07)
High-Resolution Additive Formwork for Building-Scale Concrete Panels - Ngo Tuan, Kashani Alireza, Imbalzano Gabriele, Nguyen Quynh et al. (2018-02)
Additive Manufacturing (3D Printing):
A Review of Materials, Methods, Applications and Challenges - Parisi Fabio, Sangiorgio Valentino, Parisi Nicola, Mangini Agostino et al. (2023-01)
A New Concept for Large Additive Manufacturing in Construction:
Tower-Crane-Based 3D Printing Controlled by Deep-Reinforcement-Learning - Robayo-Salazar Rafael, Gutiérrez Ruby, Villaquirán-Caicedo Mónica, Delvasto Arjona Silvio (2022-12)
3D Printing with Cementitious Materials:
Challenges and Opportunities for the Construction Sector - Roux Charlotte, Kuzmenko Kateryna, Roussel Nicolas, Mesnil Romain et al. (2022-11)
Life Cycle Assessment of a Concrete 3D Printing Process - Salaimanimagudam M., Jayaprakash Jaganathan (2022-11)
Optimum Selection of Reinforcement, Assembly, and Formwork System for Digital Fabrication Technique in Construction Industry:
A Critical Review - Sangiorgio Valentino, Parisi Fabio, Fieni Francesco, Parisi Nicola (2022-01)
The New Boundaries of 3D-Printed Clay-Bricks-Design:
Printability of Complex Internal Geometries - Sangiorgio Valentino, Parisi Fabio, Graziano Angelo, Tina Giosmary et al. (2023-11)
3D Printing of Viscous Materials in Construction:
New Design Paradigm, from Small Components to Entire Structures - Volpe Stelladriana, Sangiorgio Valentino, Fiorito Francesco, Varum Humberto (2022-12)
Overview of 3D Construction Printing and Future Perspectives:
A Review of Technology, Companies and Research Progression - Wang Li, Yang Yu, Yao Liang, Ma Guowei (2022-02)
Interfacial Bonding Properties of 3D Printed Permanent Formwork with the Post-Casted Concrete - Wu Zhengyu, Memari Ali, Duarte José (2022-01)
State of the Art Review of Reinforcement-Strategies and Technologies for 3D Printing of Concrete - Wu Peng, Wang Jun, Wang Xiangyu (2016-04)
A Critical Review of the Use of 3D Printing in the Construction Industry - Zhao Yanhua, Meng Wei, Wang Peifu, Qian Dongqing et al. (2022-09)
Research-Progress of Concrete 3D Printing Technology and Its Equipment System, Material, and Molding-Defect-Control - Zhu Binrong, Nematollahi Behzad, Pan Jinlong, Zhang Yang et al. (2021-04)
3D Concrete Printing of Permanent Formwork for Concrete Column Construction
3 Citations
- Taborda-Llano Isabella, Hoyos-Montilla Ary, Asensio Eloy, Guerrero Ana et al. (2025-12)
Influence of the Construction Process Parameters on the Mechanical Performance and Durability of 3D Printed Concrete:
A Systematic Review - Zhang Chao, Ren Juanjuan, Zhang Shihao, Guo Yipu et al. (2025-07)
Advanced Impact Resistance Design Through 3D-Printed Concrete Technology:
Unleashing the Potential of Additive Manufacturing for Protective Structures - Mahdy Deena, Marais Eugene, Abdelrahim Marwa, Dubor Alexandre et al. (2025-06)
Life Cycle Assessment of Earth-Based Residential Unit “TOVA”:
A 3D Printed On-Site Load-Bearing Structure
BibTeX
@article{sang_bian_forc.2025.ADT3PCF,
author = "Valentino Sangiorgio and Iacopo Bianchi and Archimede Forcellese",
title = "Advancing Decarbonization Through 3D Printed Concrete Formworks: LIFE Cycle Analysis of Technologies, Materials, and Processes",
doi = "10.1016/j.enbuild.2025.115444",
year = "2025",
journal = "Energy and Buildings",
pages = "115444",
}
Formatted Citation
V. Sangiorgio, I. Bianchi and A. Forcellese, “Advancing Decarbonization Through 3D Printed Concrete Formworks: LIFE Cycle Analysis of Technologies, Materials, and Processes”, Energy and Buildings, p. 115444, 2025, doi: 10.1016/j.enbuild.2025.115444.
Sangiorgio, Valentino, Iacopo Bianchi, and Archimede Forcellese. “Advancing Decarbonization Through 3D Printed Concrete Formworks: LIFE Cycle Analysis of Technologies, Materials, and Processes”. Energy and Buildings, 2025, 115444. https://doi.org/10.1016/j.enbuild.2025.115444.