3D Printable Concrete for Energy-Efficient Buildings (2023-05)¶
Samudrala Manideep, Mujeeb Syed, Lanjewar Bhagyashri, , ,
Journal Article - Energies, Vol. 16, Iss. 10, No. 4234
Abstract
Rapid construction with an energy-efficient approach is a major challenge in the present construction industry. Cement, a carbon-intensive material, is mainly used in the construction industry and hence increases the sector’s carbon footprint on the environment. The current review focuses on the study of 3D concrete printing (3DCP), in which cement is partially replaced with industrial byproducts such as ground granulated blast furnace slag (GGBS), fly ash, and silica fume. Walling material is primarily targeted in 3DCP. There is a need to include energy efficiency to achieve a thermally comfortable environment. The life cycle assessment (LCA) of concrete is studied to discover the potential conflicts affecting the environment. The sand-to-binder ratio is pivotal in determining the performance of concrete. The content of the supplements is decided based on this factor. The rheological, physical, and mechanical properties of 3DCP are studied further and analysed. GGBS demonstrates better performance in the compressive and flexure strength of concrete. The usage of fly ash and silica fume has reduced the thermal conductivity of the material, whereas GGBS has increased it. An LCA study shows that 3DCP can be made sustainable with the use of these supplementary cementitious materials.
¶
63 References
- Alchaar Aktham, Tamimi Adil (2020-10)
Mechanical Properties of 3D Printed Concrete in Hot Temperatures - Alkhalidi Ammar, Hatuqay Dina (2020-02)
Energy Efficient 3D Printed Buildings:
Material and Techniques Selection Worldwide Study - Amran Mugahed, Abdelgader Hakim, Onaizi Ali, Fediuk Roman et al. (2021-12)
3D Printable Alkali-Activated Concretes for Building Applications:
A Critical Review - Anjum Taqdees, Dongre Poorvesh, Misbah Fozail, Nanyam V. (2017-06)
Purview of 3DP in the Indian Built Environment Sector - Ayegba Blessing, Egbe King-James, Nazar Ali, Huang Mingzhi et al. (2022-01)
Resource Efficiency and Thermal Comfort of 3D Printable Concrete Building Envelopes Optimized by Performance Enhancing Insulation:
A Numerical Study - Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
3D Printing Using Concrete-Extrusion:
A Roadmap for Research - Buswell Richard, Soar Rupert, Gibb Alistar, Thorpe Tony (2006-06)
Freeform Construction:
Mega-Scale Rapid Manufacturing for Construction - Christen Heidi, Zijl Gideon, Villiers Wibke (2022-05)
The Incorporation of Recycled Brick-Aggregate in 3D Printed Concrete - Cui Hongzhi, Yu Shiheng, Cao Xiangpeng, Yang Haibin (2022-03)
Evaluation of Printability and Thermal Properties of 3D Printed Concrete Mixed with Phase-Change-Materials - Ding Tao, Xiao Jianzhuang, Qin Fei, Duan Zhenhua (2020-03)
Mechanical Behavior of 3D Printed Mortar with Recycled Sand at Early-Ages - Ding Tao, Xiao Jianzhuang, Zou Shuai, Yu Jiangtao (2021-03)
Flexural Properties of 3D Printed Fiber-Reinforced Concrete with Recycled Sand - Hambach Manuel, Volkmer Dirk (2017-02)
Properties of 3D Printed Fiber-Reinforced Portland-Cement-Paste - Han Yilong, Yang Zhihan, Ding Tao, Xiao Jianzhuang (2020-08)
Environmental and Economic Assessment on 3D Printed Buildings with Recycled Concrete - He Lewei, Tan Jolyn, Chow Wai, Li Hua et al. (2021-11)
Design of Novel Nozzles for Higher Inter-Layer Strength of 3D Printed Cement-Paste - He Yawen, Zhang Yamei, Zhang Chao, Zhou Hongyu (2020-05)
Energy-Saving-Potential of 3D Printed Concrete Building with Integrated Living Wall - Hou Shaodan, Xiao Jianzhuang, Duan Zhenhua, Ma Guowei (2021-10)
Fresh Properties of 3D Printed Mortar with Recycled Powder - Jo Jun, Jo Byung, Cho Woohyun, Kim Jung-Hoon (2020-03)
Development of a 3D Printer for Concrete Structures:
Laboratory Testing of Cementitious Materials - Kazemian Ali, Yuan Xiao, Cochran Evan, Khoshnevis Behrokh (2017-04)
Cementitious Materials for Construction-Scale 3D Printing:
Laboratory Testing of Fresh Printing Mixture - Kuzmenko Kateryna, Gaudillière-Jami Nadja, Féraille Adélaïde, Dirrenberger Justin et al. (2020-09)
Assessing the Environmental Viability of 3D Concrete Printing Technology - Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
Hardened Properties of High-Performance Printing Concrete - Liu Chao, Zhang Rongfei, Liu Huawei, He Chunhui et al. (2021-11)
Analysis of the Mechanical Performance and Damage Mechanism for 3D Printed Concrete Based on Pore-Structure - Mahadevan Meera, Francis Ann, Thomas Albert (2020-08)
A Simulation-Based Investigation of Sustainability Aspects of 3D Printed Structures - Malaeb Zeina, Sakka Fatima, Hamzeh Farook (2019-02)
3D Concrete Printing:
Machine Design, Mix Proportioning, and Mix Comparison Between Different Machine Setups - Melichar Jindřich, Žižková Nikol, Brožovský Jiří, Mészárosová Lenka et al. (2022-11)
Study of the Interaction of Cement-Based Materials for 3D Printing with Fly-Ash and Superabsorbent Polymers - Meurer Maximilian, Claßen Martin (2021-02)
Mechanical Properties of Hardened 3D Printed Concretes and Mortars:
Development of a Consistent Experimental Characterization-Strategy - Mohan Manu, Rahul Attupurathu, Schutter Geert, Tittelboom Kim (2021-01)
Early-Age Hydration, Rheology and Pumping Characteristics of CSA Cement-Based 3D Printable Concrete - Muthukrishnan Shravan, Ramakrishnan Sayanthan, Sanjayan Jay (2021-06)
Technologies for Improving Buildability in 3D Concrete Printing - Nodehi Mehrab, Ozbakkaloglu Togay, Gholampour Aliakbar (2022-04)
Effect of Supplementary Cementitious Materials on Properties of 3D Printed Conventional and Alkali-Activated Concrete:
A Review - Overmeir Anne, Figueiredo Stefan, Šavija Branko, Bos Freek et al. (2022-02)
Design and Analyses of Printable Strain-Hardening Cementitious Composites with Optimized Particle-Size-Distribution - Panda Biranchi, Paul Suvash, Tan Ming (2017-07)
Anisotropic Mechanical Performance of 3D Printed Fiber-Reinforced Sustainable Construction-Material - Panda Biranchi, Tan Ming (2018-03)
Experimental Study on Mix Proportion and Fresh Properties of Fly-Ash-Based Geopolymer for 3D Concrete Printing - Panda Biranchi, Tay Yi, Paul Suvash, Tan Ming (2018-05)
Current Challenges and Future Potential of 3D Concrete Printing - Papachristoforou Michail, Mitsopoulos Vasilios, Stefanidou Maria (2018-10)
Evaluation of Workability Parameters in 3D Printing Concrete - Paul Suvash, Tay Yi, Panda Biranchi, Tan Ming (2017-08)
Fresh and Hardened Properties of 3D Printable Cementitious Materials for Building and Construction - Pham Luong, Tran Jonathan, Sanjayan Jay (2020-04)
Steel-Fiber-Reinforced 3D Printed Concrete:
Influence of Fiber Sizes on Mechanical Performance - Rahul Attupurathu, Santhanam Manu, Meena Hitesh, Ghani Zimam (2018-12)
3D Printable Concrete:
Mixture-Design and Test-Methods - Rehman Atta, Kim Jung-Hoon (2021-07)
3D Concrete Printing:
A Systematic Review of Rheology, Mix Designs, Mechanical, Microstructural, and Durability Characteristics - Roussel Nicolas (2018-05)
Rheological Requirements for Printable Concretes - Schuldt Steven, Jagoda Jeneé, Hoisington Andrew, Delorit Justin (2021-03)
A Systematic Review and Analysis of the Viability of 3D Printed Construction in Remote Environments - Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
Vision of 3D Printing with Concrete:
Technical, Economic and Environmental Potentials - Srinivas Dodda, Dey Dhrutiman, Panda Biranchi, Sitharam Thallak (2022-12)
Printability, Thermal and Compressive Strength Properties of Cementitious Materials:
A Comparative Study with Silica-Fume and Limestone - Tay Yi, Qian Ye, Tan Ming (2019-05)
Printability-Region for 3D Concrete Printing Using Slump- and Slump-Flow-Test - Tinoco Matheus, Mendonça Érica, Fernandez Letízia, Caldas Lucas et al. (2022-04)
Life Cycle Assessment and Environmental Sustainability of Cementitious Materials for 3D Concrete Printing:
A Systematic Literature Review - Wolfs Robert, Bos Freek, Salet Theo (2018-02)
Early-Age Mechanical Behaviour of 3D Printed Concrete:
Numerical Modelling and Experimental Testing - Wolfs Robert, Bos Freek, Salet Theo (2019-03)
Hardened Properties of 3D Printed Concrete:
The Influence of Process Parameters on Inter-Layer Adhesion - Wu Yiwen, Liu Chao, Liu Huawei, Zhang Zhenzi et al. (2021-07)
Study on the Rheology and Buildability of 3D Printed Concrete with Recycled Coarse Aggregates - Wu Peng, Wang Jun, Wang Xiangyu (2016-04)
A Critical Review of the Use of 3D Printing in the Construction Industry - Xiao Jianzhuang, Ji Guangchao, Zhang Yamei, Ma Guowei et al. (2021-06)
Large-Scale 3D Printing Concrete Technology:
Current Status and Future Opportunities - Xiao Jianzhuang, Lv Zhenyuan, Duan Zhenhua, Hou Shaodan (2022-03)
Study on Preparation and Mechanical Properties of 3D Printed Concrete with Different Aggregate-Combinations - Xu Jie, Ding Lieyun (2018-07)
Volume-Forming 3D Concrete Printing Using a Variable-Diameter Square Nozzle - Yang Hongxiong, Chung Jacky, Chen Yuhong, Li Yijia (2018-06)
The Cost Calculation Method of Construction 3D Printing Aligned with Internet of Things - Yao Yue, Hu Mingming, Maio Francesco, Cucurachi Stefano (2019-08)
Life Cycle Assessment of 3D Printing Geopolymer Concrete:
An Ex‐Ante Study - Ye Junhong, Cui Can, Yu Jiangtao, Yu Kequan et al. (2021-01)
Fresh and Anisotropic-Mechanical Properties of 3D Printable Ultra-High-Ductile Concrete with Crumb-Rubber - Yin Jian, Suo Yiru, Lv Tao, Ma Kaisi et al. (2021-12)
Application of 3D Printing Technology in the Construction Industry and Its Development Prospects - Yu Shiwei, Xia Ming, Sanjayan Jay, Yang Lin et al. (2021-07)
Microstructural Characterization of 3D Printed Concrete - Zhang Chao, Deng Zhicong, Chen Chun, Zhang Yamei et al. (2022-03)
Predicting the Static Yield-Stress of 3D Printable Concrete Based on Flowability of Paste and Thickness of Excess-Paste-Layer - Zhang Chao, Hou Zeyu, Chen Chun, Zhang Yamei et al. (2019-09)
Design of 3D Printable Concrete Based on the Relationship Between Flowability of Cement-Paste and Optimum Aggregate-Content - Zhang Chao, Nerella Venkatesh, Krishna Anurag, Wang Shen et al. (2021-06)
Mix-Design Concepts for 3D Printable Concrete:
A Review - Zhang Nan, Sanjayan Jay (2023-01)
Extrusion Nozzle Design and Print Parameter Selections for 3D Concrete Printing - Zhang Yu, Zhang Yunsheng, Liu Guojian, Yang Yonggan et al. (2018-04)
Fresh Properties of a Novel 3D Printing Concrete Ink - Zhu Binrong, Nematollahi Behzad, Pan Jinlong, Zhang Yang et al. (2021-04)
3D Concrete Printing of Permanent Formwork for Concrete Column Construction - Zhu Binrong, Pan Jinlong, Nematollahi Behzad, Zhou Zhenxin et al. (2019-07)
Development of 3D Printable Engineered Cementitious Composites with Ultra-High Tensile Ductility for Digital Construction - Ziejewska Celina, Marczyk Joanna, Korniejenko Kinga, Bednarz Sebastian et al. (2022-04)
3D Printing of Concrete-Geopolymer Hybrids
11 Citations
- Iqbal Imtiaz, Kasim Tala, Besklubova Svetlana, Inqiad Waleed et al. (2025-12)
Exploring Knowledge Domains and Future Research Directions in 3D Printed Concrete:
A Bibliometric and Systematic Review - Masri Abdullah, Vazquez Elaine, Haddad Assed, Najjar Mohammed (2025-10)
Life Cycle Costing in 3D Printing:
A Literature Review - Goel Devansh, Kore Sudarshan (2025-07)
Mapping the Bibliometric Progression of 3D Concrete Printing:
A Concise Review - Bajwa Asad, Flemmer Claire, Samarasinghe Don, Bao Ding et al. (2025-07)
Sustainability of 3D Printing Technology:
A Review on Research Trends and Developments - Chippagiri Ravijanya, Lanjewar Bhagyashri, Kamath Muralidhar, Ralegaonkar Rahul (2025-05)
Prediction of Construction Materials for Conventional and Alkali-Activated 3D Concrete Printing - Chourasia Ajay, Pal Biswajit, Kapoor Ashish (2025-02)
Influence of Printing Direction and Interlayer Printing Time on the Bond Characteristics and Hardened Mechanical Properties of Agro-Industrial Waste-Based 3D Printed Concrete - Habibi Alireza, Buswell Richard, Osmani Mohamed, Aziminezhad Mohamadmahdi (2024-11)
Sustainability Principles in 3D Concrete Printing:
Analysing Trends, Classifying Strategies, and Future Directions - Wei Yazhi, Zhang Hui (2024-09)
Influence of Temperature and Humidity on Mechanical Properties of Calcined-Oyster-Shell-Powder-Modified 3D Printed Concrete - Rubeis Tullio, Ciccozzi Annamaria, Giusti Letizia, Ambrosini Dario (2024-07)
On the Use of 3D Printing to Enhance the Thermal Performance of Building Envelope:
A Review - Khan Mehran, McNally Ciaran (2024-05)
Recent Developments on Low-Carbon 3D Printing Concrete:
Revolutionizing Construction Through Innovative Technology - Calabrese Giuseppe, Hidding Arwin, Bier Henriette (2024-04)
Review of Cementless Materials for 3D Printing of On- and Off-Earth Habitats
BibTeX
@article{samu_muje_lanj_chip.2023.3PCfEEB,
author = "Manideep Samudrala and Syed Mujeeb and Bhagyashri A. Lanjewar and Ravijanya Chippagiri and Muralidhar Kamath and Rahul V. Ralegaonkar",
title = "3D Printable Concrete for Energy-Efficient Buildings",
doi = "10.3390/en16104234",
year = "2023",
journal = "Energies",
volume = "16",
number = "10",
pages = "4234",
}
Formatted Citation
M. Samudrala, S. Mujeeb, B. A. Lanjewar, R. Chippagiri, M. Kamath and R. V. Ralegaonkar, “3D Printable Concrete for Energy-Efficient Buildings”, Energies, vol. 16, no. 10, p. 4234, 2023, doi: 10.3390/en16104234.
Samudrala, Manideep, Syed Mujeeb, Bhagyashri A. Lanjewar, Ravijanya Chippagiri, Muralidhar Kamath, and Rahul V. Ralegaonkar. “3D Printable Concrete for Energy-Efficient Buildings”. Energies 16, no. 10 (2023): 4234. https://doi.org/10.3390/en16104234.