Feasibility, Mechanical Properties, and Environmental Impact of 3D-Printed Mortar Incorporating Recycled Fine Aggregates from Decoration and Renovation Waste (2026-04)¶
Yuan Pu, Wang Xinjie, , Shi Quanbin,
Journal Article - Materials, Vol. 19, Iss. 8, No. 1618
Abstract
To address the accumulation of construction and demolition waste (W&D), this study recycled it into regenerated fine aggregate and prepared 3D-printed mortars with replacement ratios ranging from 0% to 100%. The mechanical properties of hardened specimens were tested, and the degradation mechanisms of mechanical performance were investigated through SEM, MIP, and microhardness analysis. The carbon emissions of the materials were evaluated. The results indicated that while the 3D-printed mortar exhibited excellent buildability, its compressive strength, flexural strength, and interlayer bond strength gradually decreased with increasing replacement ratio. MIP results showed that as the replacement ratio of the W&D increased from 0% to 100%, the total porosity of the 3D-printed specimens significantly increased from 14.7433% to 27.5903%. SEM and microhardness images confirmed severe ITZ deterioration, and the average ITZ width increased from 31 to 79 μm. As the W&D replacement ratio increased from 0% to 100%, the total GWP decreased from 0.4043 to 0.3800 kg CO2-eq/kg mortar. Maximizing the utilization of W&D is key to achieving efficient utilization of solid waste. Considering printability, mechanical performance, interlayer behavior, microstructural characteristics, and environmental impact in a comprehensive manner, the 80% W&D replacement ratio can be regarded as a relatively balanced and promising selection. This work not only suggests the technical feasibility of recycling W&D in 3D printing mortar, but also proposes a sustainable pathway to reduce carbon emissions in construction.
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52 References
- Aramburu Amaia, Calderon-Uriszar-Aldaca Iñigo, Puente Iñigo, Castano-Alvarez Ruben (2024-03)
Effects of 3D Printing on the Tensile Splitting Strength of Concrete Structures - Bai Meiyan, Wu Yuching, Xiao Jianzhuang, Ding Tao et al. (2023-04)
Workability and Hardened Properties of 3D Printed Engineered Cementitious Composites Incorporating Recycled Sand and PE-Fibers - Carvalho Ivo, Melo Abcael, Melo Carlos, Brito Mateus et al. (2023-12)
Evaluation of the Effect of Rubber-Waste-Particles on the Rheological and Mechanical Properties of Cementitious Materials for 3D Printing - Chen Meng, Cheng Jianhua, Zhang Tong, Wang Yuting (2025-03)
Experimental Characterization and Constitutive Modelling of the Anisotropic Dynamic Compressive Behavior of 3D Printed Engineered Cementitious Composites - 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 - Dai Pengfei, Luo Zhenhua, Wang Yalun, Mbabazi Justin et al. (2025-06)
Waste Plastic Fiber Reinforced Cementitious Cavity Structures Manufactured by Mortar Extrusion 3D Printing - Dai Pengfei, Lyu Qifeng, Zong Meirong, Zhu Pinghua (2024-01)
Effect of Waste-Plastic-Fibers on the Printability and Mechanical Properties of 3D Printed Cement Mortar - Dey Dhrutiman, Srinivas Dodda, Panda Biranchi, Suraneni Prannoy et al. (2022-02)
Use of Industrial Waste-Materials for 3D Printing of Sustainable Concrete:
A Review - 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, Wang Yu (2020-06)
Hardened Properties of Layered 3D Printed Concrete with Recycled Sand - Foteinopoulos Panagis, Esnault Vivien, Komineas George, Papacharalampopoulos Alexios et al. (2020-01)
Cement-Based Additive Manufacturing:
Experimental Investigation of Process Quality - Gu Yucun, Zheng Shuyi, Ma Hongyan, Long Wujian et al. (2024-05)
Effect of Absorption Kinetics of Superabsorbent Polymers on Printability and Inter-Layer Bond of 3D Printing Concrete - Han Yilong, Yang Zhihan, Ding Tao, Xiao Jianzhuang (2020-08)
Environmental and Economic Assessment on 3D Printed Buildings with Recycled Concrete - Hao Lucen, Xiao Jianzhuang, Sun Jingting, Xia Bing et al. (2022-06)
Thermal Conductivity of 3D Printed Concrete With Recycled Fine Aggregate Composite Phase-Change-Materials - Hasani Alireza, Dorafshan Sattar (2024-06)
Transforming Construction?:
Evaluation of the State of Structural 3D Concrete Printing in Research and Practice - Hassan Habibelrahman, Rodriguez-Ubinas Edwin, Tamimi Adil, Trepci Esra et al. (2024-04)
Towards Innovative and Sustainable Buildings:
A Comprehensive Review of 3D Printing in Construction - Hou Shaodan, Xiao Jianzhuang, Duan Zhenhua, Ma Guowei (2021-10)
Fresh Properties of 3D Printed Mortar with Recycled Powder - Ivanova Irina, Ivaniuk Egor, Bisetti Sameercharan, Nerella Venkatesh et al. (2022-03)
Comparison Between Methods for Indirect Assessment of Buildability in Fresh 3D Printed Mortar and Concrete - Kaliyavaradhan Senthil, Ambily Parukutty, Prem Prabhat, Ghodke Swapnil (2022-08)
Test-Methods for 3D Printable Concrete - Keita Emmanuel, Bessaies-Bey Hela, Zuo Wenqiang, Belin Patrick et al. (2019-06)
Weak Bond Strength Between Successive Layers in Extrusion-Based Additive Manufacturing:
Measurement and Physical Origin - Khan Mohammad, Sanchez Florence, Zhou Hongyu (2020-04)
3D Printing of Concrete:
Beyond Horizons - Khoshnevis Behrokh (2003-11)
Automated Construction by Contour Crafting:
Related Robotics and Information Technologies - Khoshnevis Behrokh, Dutton Rosanne (1998-01)
Innovative Rapid Prototyping Process Makes Large-Sized, Smooth-Surfaced Complex Shapes in a Wide Variety of Materials - Kolawole John, Buswell Richard, Mahmood Sultan, Isa Muhammed et al. (2025-02)
On the Origins of Anisotropy of Extrusion-Based 3D Printed Concrete:
The Roles of Filament Skin and Agglomeration - Lee Hojae, Kim Jang-Ho, Moon Jae-Heum, Kim Won-Woo et al. (2019-08)
Correlation Between Pore Characteristics and Tensile Bond Strength of Additive Manufactured Mortar Using X-Ray Computed Tomography - Ler Kee-Hong, Ma Chau-Khun, Chin Chee-Long, Ibrahim Izni et al. (2024-08)
Porosity and Durability Tests on 3D Printing Concrete:
A Review - Lin Wenyu, Wang Li, Li Zhijian, Bai Gang et al. (2025-06)
Multi-Scale Fabrication and Challenges in 3D Printing of Special -Shaped Concrete Structures - Liu Qiong, Singh Amardeep, Wang Qiming, Qifeng Lyu (2025-05)
3D-Printed Application in Concretes - Liu Chao, Wang Zhihui, Wu Yiwen, Liu Huawei et al. (2023-02)
3D Printing Concrete with Recycled Sand:
The Influence Mechanism of Extruded Pore-Defects on Constitutive Relationship - Liu Chao, Xiong Yuanliang, Chen Yuning, Jia Lutao et al. (2022-01)
Effect of Sulphoaluminate Cement on Fresh and Hardened Properties of 3D Printing Foamed Concrete - Lyu Qifeng, Wang Yalun, Dai Pengfei (2024-05)
Multilayered Plant-Growing Concrete Manufactured by Aggregate-Bed 3D Concrete Printing - Mai (née Dressler) Inka, Brohmann Leon, Freund Niklas, Gantner Stefan et al. (2021-10)
Large Particle 3D Concrete Printing:
A Green and Viable Solution - Mechtcherine Viktor, Bos Freek, Perrot Arnaud, Silva Wilson et al. (2020-03)
Extrusion-Based Additive Manufacturing with Cement-Based Materials:
Production Steps, Processes, and Their Underlying Physics - Muthukrishnan Shravan, Ramakrishnan Sayanthan, Sanjayan Jay (2021-06)
Technologies for Improving Buildability in 3D Concrete Printing - Özkılıç Hamza, İlcan Hüseyin, Aminipour Ehsan, Tuğluca Merve et al. (2023-08)
Bond Properties and Anisotropy Performance of 3D Printed Construction and Demolition Waste-Based Geopolymers:
Effect of Operational- and Material-Oriented Parameters - Pasupathy Kirubajiny, Ramakrishnan Sayanthan, Sanjayan Jay (2023-01)
3D Concrete Printing of Eco-Friendly Geopolymer Containing Brick Waste - Qian Hao, Hua Sudong, Yue Hongfei, Feng Guiyang et al. (2022-09)
Utilization of Recycled Construction-Powder in 3D Concrete Printable Materials through Particle-Packing-Optimization - Rahemipoor Sahand, Bayat Mohammad, Hasany Masoud, Mehrali Mohammad et al. (2024-10)
Micro-Encapsulated Phase-Change-Material in 3D Printable Mortars - Sanjayan Jay, Nematollahi Behzad, Xia Ming, Marchment Taylor (2018-04)
Effect of Surface Moisture on Inter-Layer Strength of 3D Printed Concrete - Saruhan Vedat, Keskinateş Muhammer, Felekoğlu Burak (2022-04)
A Comprehensive Review on Fresh State Rheological Properties of Extrusion-Mortars Designed for 3D Printing Applications - Sun Bochao, Zeng Qiang, Wang Dianchao, Zhao Weijian (2022-10)
Sustainable 3D Printed Mortar with CO2 Pretreated Recycled Fine Aggregates - Tabassum Toiba, Ahmad Mir Ajaz (2023-08)
A Review of 3D Printing Technology:
The Future of Sustainable Construction - Ting Guan, Tay Yi, Tan Ming (2021-04)
Experimental Measurement on the Effects of Recycled Glass-Cullets as Aggregates for Construction 3D Printing - 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 - Vlieger Jentel, Boehme Luc, Blaakmeer Jan, Li Jiabin (2023-01)
Buildability-Assessment of Mortar with Fine Recycled Aggregates for 3D Printing - Wang Qiang, Yang Wenwei, Wang Li, Bai Gang et al. (2025-03)
Reinforcement Design and Structural Performance for the Topology Optimized 3D Printed Concrete Truss Beams - Wolfs Robert, Suiker Akke (2019-06)
Structural Failure During Extrusion-Based 3D Printing Processes - Xiao Jianzhuang, Han Nv, Zhang Lihai, Zou Shuai (2021-05)
Mechanical and Microstructural Evolution of 3D Printed Concrete with Polyethylene-Fiber and Recycled Sand at Elevated Temperatures - Xiao Jianzhuang, Lv Zhenyuan, Duan Zhenhua, Hou Shaodan (2022-03)
Study on Preparation and Mechanical Properties of 3D Printed Concrete with Different Aggregate-Combinations - Xue Jia-Chen, Wang Wei-Chien, Lee Ming-Gin, Huang Chia-Yun (2025-09)
Development of Sustainable 3D Printing Concrete Materials:
Impact of Natural Minerals and Wastes at High Replacement Ratios - Yao Weijing, Gao Yangyunzhi, Huang Xin, Du Hongjian (2025-08)
Influence of Printing Speed and Extrusion Speed on the Performance and Pore Structures of 3D Printed Mortar - Zhou Juanlan, Shi Xiangwen, Zheng Hongrun, Jin Ruoyu et al. (2025-09)
Investigating the Effects of Hybrid PVA/BF Fibers in Low-Carbon 3D Printed Concrete with Recycled Aggregates:
Rheology, Strength, and Anisotropy
0 Citations
BibTeX
@article{yuan_wang_huan_shi.2026.FMPaEIo3PMIRFAfDaRW,
author = "Pu Yuan and Xinjie Wang and Jie Huang and Quanbin Shi and Minqi Hua",
title = "Feasibility, Mechanical Properties, and Environmental Impact of 3D-Printed Mortar Incorporating Recycled Fine Aggregates from Decoration and Renovation Waste",
doi = "10.3390/ma19081618",
year = "2026",
journal = "Materials",
volume = "19",
number = "8",
pages = "1618",
}
Formatted Citation
P. Yuan, X. Wang, J. Huang, Q. Shi and M. Hua, “Feasibility, Mechanical Properties, and Environmental Impact of 3D-Printed Mortar Incorporating Recycled Fine Aggregates from Decoration and Renovation Waste”, Materials, vol. 19, no. 8, p. 1618, 2026, doi: 10.3390/ma19081618.
Yuan, Pu, Xinjie Wang, Jie Huang, Quanbin Shi, and Minqi Hua. “Feasibility, Mechanical Properties, and Environmental Impact of 3D-Printed Mortar Incorporating Recycled Fine Aggregates from Decoration and Renovation Waste”. Materials 19, no. 8 (2026): 1618. https://doi.org/10.3390/ma19081618.