3D Printing of Buildings and Building Components as the Future of Sustainable Construction? (2016-08)¶
, Golonka Anna,
Journal Article - Procedia Engineering, Vol. 151, pp. 292-299
Abstract
The paper presents the state-of-the-art concerning the current achievements in the field of 3D printing of buildings and building components. The 3D printing technologies, comparing to traditional techniques of constructing the buildings, could be considered as environmental friendly derivative giving almost unlimited possibilities for geometric complexity realizations. Two kinds of technologies were described in this paper with pointing to Contour Crafting as a promising technique that may be able to revolutionize construction industry in near future. Numerous advantages of this technology, such as reduction of the costs and time, minimizing the pollution of environment and decrease of injuries and fatalities on construction sites could be cited. Despite many advantages and hopes, some concerns are summarized in the conclusions, as the technology still has many limitations. A brief description of few examples of pioneering usage of 3D printing in construction industry are presented (Canal House in Amsterdam, WinSun company and printing application for building carried out by Skanska company). Creating a model that will be appropriate for 3D printers is possible in many different modelling programs. One of the most popular formats for sharing such models is STL format. In the paper sample models crated in Autodesk Inventor are shown, but also other tools suitable for preparing models for 3D printing are briefly discussed.
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2 References
201 Citations
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Factors Affecting 3D Printing Technology Adaptation in Construction - Pessoa Ana Sofia, Guimarães Ana, Lucas Sandra, Simões Nuno (2021-02)
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Additive Fabrication of Concrete Elements by Robots:
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A Simulation-Based Investigation of Sustainability Aspects of 3D Printed Structures - He Rui, Li Mingkai, Gan Vincent, Ma Jun (2020-08)
BIM-Enabled Computerized Design and Digital Fabrication of Industrialized Buildings:
A Case Study - Mengesha Meron, Schmidt Albrecht, Göbel Luise, Lahmer Tom (2020-07)
Numerical Modeling of an Extrusion-Based 3D Concrete Printing-Process Considering a Spatially-Varying Pseudo-Density Approach - Wu Yun-Chen, Cotrell Jason, Li Mo (2020-07)
Inter-Layer Effect on Fracture Behavior of 3D Printing Concrete - Toklu Yusuf, Bekdaş Gebrail, Geem Zong (2020-06)
Harmony-Search-Optimization of Nozzle Movement for Additive Manufacturing of Concrete Structures and Concrete Elements - Nair Sooraj, Panda Subhashree, Santhanam Manu, Sant Gaurav et al. (2020-05)
A Critical Examination of the Influence of Material-Characteristics and Extruder-Geometry on 3D Printing of Cementitious Binders - Hoffmann Marcin, Skibicki Szymon, Pankratow Paweł, Zieliński Adam et al. (2020-04)
Automation in the Construction of a 3D Printed Concrete Wall with the Use of a Lintel Gripper - Shahsavari Rouzbeh, Hwang Sung (2020-03)
Bio-Iinspired Cementitious Materials:
Main Strategies, Progress, and Applications - Alkhalidi Ammar, Hatuqay Dina (2020-02)
Energy Efficient 3D Printed Buildings:
Material and Techniques Selection Worldwide Study - Aghimien Douglas, Aigbavboa Clinton, Aghimien Lerato, Thwala Wellington et al. (2020-01)
Making a Case for 3D Printing for Housing Delivery in South Africa - Kosson Michael, Brown Lesa, Sanchez Florence (2020-01)
Early-Age Performance of 3D Printed Carbon-Nano-Fiber and Carbon Micro-Fiber Cement Composites - Siddika Ayesha, Mamun Md., Ferdous Wahid, Saha Ashish et al. (2019-12)
3D Printed Concrete:
Applications, Performance, and Challenges - Annappa Vani, Gaspar Florindo, Mateus Artur, Vitorino João (2019-11)
3D Printing for Construction Using Stone Sludge - Freire Tiago, Brun Francis, Mateus Artur, Gaspar Florindo (2019-11)
3D Printing Technology in the Construction Industry - Yeon Jaeheum (2019-10)
Short-Term Deformability of Three-Dimensional Printable EVA-Modified Cementitious Mortars - Shen Hongyao, Pan Lingnan, Qian Jun (2019-10)
Research on Large-Scale Additive Manufacturing Based on Multi-Robot Collaboration Technology - Sanguinetti Paola, Almazam Khaled, Humaidan Omar, Colistra Joe et al. (2019-09)
Evaluating the Potential of High-Performance Concrete 3D Printed Affordable Zero Energy Homes - Yeon Kyu-Seok, Kim Kwan, Yeon Jaeheum, Lee Hee (2019-08)
Compressive and Flexural Strengths of EVA-Modified Mortars for 3D Additive Construction - Yao Yue, Hu Mingming, Maio Francesco, Cucurachi Stefano (2019-08)
Life Cycle Assessment of 3D Printing Geopolymer Concrete:
An Ex‐Ante Study - Kim Kwan, Yeon Jaeheum, Lee Hee (2019-08)
Strength Development Characteristics of SBR-Modified Cementitious Mixtures for 3D Concrete Printing - Meng Xiangcheng, Zhang Xueqing (2019-07)
Case-Study-Analysis for Development-Strategies of Construction 3D Printing - Alghamdi Hussam, Neithalath Narayanan (2019-07)
Synthesis and Characterization of 3D Printable Geopolymeric Foams for Thermally Efficient Building Envelope Materials - Vantyghem Gieljan, Corte Wouter, Steeman Marijke, Boel Veerle (2019-07)
Density-Based Topology-Optimization for 3D Printable Building Structures - Grassi Giulia, Lupica Spagnolo Sonia, Paoletti Ingrid (2019-05)
Fabrication and Durability Testing of a 3D Printed Façade for Desert Climates - Geneidy Omar, Ismaeel Walaa, Abbas Ayman (2019-04)
A Critical Review for Applying Three-Dimensional Concrete Wall Printing Technology in Egypt - Lee Dongyoun, Kim Hakmin, Sim Joonhyeok, Lee Dongmin et al. (2019-04)
Trends in 3D Printing Technology for Construction Automation Using Text Mining - Furet Benoît, Poullain Philippe, Garnier Sébastien (2019-04)
3D Printing for Construction Based on a Complex Wall of Polymer-Foam and Concrete - Avrutis Daniel, Nazari Ali, Sanjayan Jay (2019-02)
Industrial Adoption of 3D Concrete Printing in the Australian Market - Bentz Dale, Jones Scott, Bentz Isaiah, Peltz Max (2019-02)
Towards the Formulation of Robust and Sustainable Cementitious Binders for 3D Additive Construction by Extrusion - Malaeb Zeina, Sakka Fatima, Hamzeh Farook (2019-02)
3D Concrete Printing:
Machine Design, Mix Proportioning, and Mix Comparison Between Different Machine Setups - Xia Ming, Nematollahi Behzad, Sanjayan Jay (2019-02)
Development of Powder-Based 3D Concrete Printing Using Geopolymers - Ingaglio Joseph, Fox John, Naito Clay, Bocchini Paolo (2019-02)
Material-Characteristics of Binder-Jet 3D Printed Hydrated CSA Cement with the Addition of Fine Aggregates - Alghamdi Hussam, Nair Sooraj, Neithalath Narayanan (2019-02)
Insights into Material-Design, Extrusion Rheology, and Properties of 3D Printable Alkali-Activated Fly-Ash-Based Binders - Shakor Pshtiwan, Nejadi Shami, Paul Gavin, Malek Sardar (2019-01)
Review of Emerging Additive Manufacturing Technologies in 3D Printing of Cementitious Materials in the Construction Industry - Nair Sooraj, Alghamdi Hussam, Arora Aashay, Mehdipour Iman et al. (2019-01)
Linking Fresh Paste Microstructure, Rheology and Extrusion-Characteristics of Cementitious Binders for 3D Printing - Bentz Dale, Jones Scott, Bentz Isaiah, Peltz Max (2018-06)
Towards the Formulation of Robust and Sustainable Cementitious Binders for 3D Additive Construction by Extrusion - Poullain Philippe, Paquet Elodie, Garnier Sébastien, Furet Benoît (2018-06)
On-Site Deployment of 3D Printing for the Building Construction:
The Case of YhnovaTM - Yang Hongxiong, Chung Jacky, Chen Yuhong, Li Yijia (2018-06)
The Cost Calculation Method of Construction 3D Printing Aligned with Internet of Things - Ghaffar Seyed, Corker Jorge, Fan Mizi (2018-05)
Additive Manufacturing Technology and Its Implementation in Construction as an Eco-Innovative Solution - Yeon Kyu-Seok, Kim Kwan, Yeon Jaeheum (2018-05)
Feasibility Study of the Use of Polymer-Modified Cement Composites as 3D Concrete Printing-Material - Ngo Tuan, Kashani Alireza, Imbalzano Gabriele, Nguyen Quynh et al. (2018-02)
Additive Manufacturing (3D Printing):
A Review of Materials, Methods, Applications and Challenges - Chen Yu, Çopuroğlu Oğuzhan, Veer Frederic (2018-01)
A Critical Review of 3D Concrete Printing as a Low-CO2 Concrete Approach - Sakin Mehmet, Kiroglu Yusuf (2017-10)
3D Printing of Buildings:
Construction of the Sustainable Houses of the Future by BIM - Khalil Noura, Aouad Georges, Cheikh Khadija, Rémond Sébastien (2017-09)
Use of Calcium-Sulfoaluminate-Cements for Setting-Control of 3D Printing Mortars - Anjum Taqdees, Dongre Poorvesh, Misbah Fozail, Nanyam V. (2017-06)
Purview of 3DP in the Indian Built Environment Sector - Biernacki Joseph, Bullard Jeffrey, Sant Gaurav, Banthia Nemkumar et al. (2017-04)
Cements in the 21st Century:
Challenges, Perspectives, and Opportunities
BibTeX
@article{hage_golo_puta.2016.3PoBaBCatFoSC,
author = "Izabela Hager and Anna Golonka and Roman Putanowicz",
title = "3D Printing of Buildings and Building Components as the Future of Sustainable Construction?",
doi = "10.1016/j.proeng.2016.07.357",
year = "2016",
journal = "Procedia Engineering",
volume = "151",
pages = "292--299",
}
Formatted Citation
I. Hager, A. Golonka and R. Putanowicz, “3D Printing of Buildings and Building Components as the Future of Sustainable Construction?”, Procedia Engineering, vol. 151, pp. 292–299, 2016, doi: 10.1016/j.proeng.2016.07.357.
Hager, Izabela, Anna Golonka, and Roman Putanowicz. “3D Printing of Buildings and Building Components as the Future of Sustainable Construction?”. Procedia Engineering 151 (2016): 292–99. https://doi.org/10.1016/j.proeng.2016.07.357.