A review of "3D concrete printing": Materials and process characterization, economic considerations and environmental sustainability

被引:96
作者
Ahmed, Ghafur H. [1 ]
机构
[1] Erbil Polytech Univ, Tech Engn Coll, Dept Highway & Bridge Engn, Erbil 44001, Kurdistan, Iraq
来源
JOURNAL OF BUILDING ENGINEERING | 2023年 / 66卷
关键词
Additive manufacturing (AM); 3D concrete printing (3DCP); Economic consideration; Sustainability; Construction automation; Environmental impact; PRINTABLE CEMENTITIOUS MATERIALS; HIGH PERFORMANCE CONCRETE; TENSILE BOND STRENGTH; OF-THE-ART; MECHANICAL-PROPERTIES; BUILDING COMPONENTS; RHEOLOGICAL PROPERTIES; DIGITAL FABRICATION; INTERLAYER ADHESION; HARDENED PROPERTIES;
D O I
10.1016/j.jobe.2023.105863
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
3D printing of cementitious materials or concrete (3DCP) has developed unbelievably in past 10 years and has the potential to revolutionize the concrete industry completely in the couple of in-coming decades. Compared to cast concrete, 3DCP technology has a high customizability of ar-chitectural and structural design; can reduce material consumption, minimize material waste, de-crease construction time from months or days to hours; can improve sustainability, environmen-tal impact and resolve residential crises through providing $10,000 homes. In this article, a com-prehensive review for 3D printing of various materials, techniques and trending applications has been carried out. The materials used for 3DCP, mix design principles and printing process para-meters has been overviewed. The factors influencing flowability, extrudability, buildability of various mixes; microstructure and mechanical properties of the hardened concrete; and improve-ment techniques has been discussed. An important part of this review is provided to highlight the cost of 3D printed houses compared with traditional alternatives, and environmental sustainabil-ity of 3DCP and its compatibility with international plans for climate change and minimizing the energy usage. Finally, some to-date challenges are discussed, with conclusions that also identifies the needed research and state of the art for this incredible technology. Overall, this review pre-sents the finding of the mentioned topics through exploring 396 of the latest published articles es-pecially focusing on last three years.
引用
收藏
页数:32
相关论文
共 395 条
[41]  
Bester F., 2020, 2 RILEM INT C CONCR, DOI [10.1007/978-3-030-49916-7_41,398406, DOI 10.1007/978-3-030-49916-7_41,398406]
[42]   3-D bioprinting technologies in tissue engineering and regenerative medicine: Current and future trends [J].
Bishop, Elliot S. ;
Mostafa, Sami ;
Pakvasa, Mikhail ;
Luu, Hue H. ;
Lee, Michael J. ;
Wolf, Jennifer Moriatis ;
Ameer, Guillermo A. ;
He, Tong-Chuan ;
Reid, Russell R. .
GENES & DISEASES, 2017, 4 (04) :185-195
[43]   3D printing: the dawn of a new era in manufacturing? [J].
Bogue, Robert .
ASSEMBLY AUTOMATION, 2013, 33 (04) :307-311
[44]   Ductility of 3D printed concrete reinforced with short straight steel fibers [J].
Bos, F. P. ;
Bosco, E. ;
Salet, T. A. M. .
VIRTUAL AND PHYSICAL PROTOTYPING, 2019, 14 (02) :160-174
[45]   CCR Digital Concrete 2020 SI: Editorial [J].
Bos, Freek ;
Wolfs, Rob ;
Salet, Theo .
CEMENT AND CONCRETE RESEARCH, 2020, 135
[46]   Additive manufacturing of concrete in construction: potentials and challenges of 3D concrete printing [J].
Bos, Freek ;
Wolfs, Rob ;
Ahmed, Zeeshan ;
Salet, Theo .
VIRTUAL AND PHYSICAL PROTOTYPING, 2016, 11 (03) :209-225
[47]   Experimental Exploration of Metal Cable as Reinforcement in 3D Printed Concrete [J].
Bos, Freek P. ;
Ahmed, Zeeshan Y. ;
Jutinov, Evgeniy R. ;
Salet, Theo A. M. .
MATERIALS, 2017, 10 (11)
[48]   3D Printing Concrete with Reinforcement [J].
Bos, Freek P. ;
Ahmed, Zeeshan Y. ;
Wolfs, Rob J. M. ;
Salet, Theo A. M. .
HIGH TECH CONCRETE: WHERE TECHNOLOGY AND ENGINEERING MEET, 2018, :2484-2493
[49]   Cable-suspended robotic contour crafting system [J].
Bosscher, Paul ;
Williams, Robert L., II ;
Bryson, L. Sebastian ;
Castro-Lacouture, Daniel .
AUTOMATION IN CONSTRUCTION, 2007, 17 (01) :45-55
[50]   3D printable fully biomass-based composite using poly(furfuryl alcohol) as binder and cellulose as a filler [J].
Bouzidi, K. ;
Chaussy, D. ;
Gandini, A. ;
Bongiovanni, R. ;
Beneventi, D. .
CARBOHYDRATE POLYMERS, 2022, 293