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Keywords by Co - Occurrence

  1. Valdez-Cano R., González-López J., De-Los-Santos E., Mendoza‐Rangel J. et al. (2026-01)
    Alternative Silica Aerogel Mortar for Improving Energy Efficiency, Thermal Comfort, and Environmental Performance in Residential Buildings Under Hot-Dry Climates Using 3D Additive Manufacturing
  2. Nguyen Nhat, Javan Kazem, Jordan Adam, Akbarnezhad Ali et al. (2026-01)
    Techno-Economic Analysis of 3D Printed Modular Housing:
    Productivity, Cost, and Environmental Assessment
  3. Nadais Mariana, Cunha Rui, Pessoa Ana Sofia, Delgado João et al. (2026-01)
    Enhancing Indoor Environmental Quality Through Real-Time Monitoring:
    A Case Study of a 3D-Printed House
  4. Cunha Jaime, Rangel Bárbara, Vilas-Boas Rodrigo (2026-01)
    Evaluating the Environmental Efficiency of on-Site and Off-Site 3D Construction Printing:
    A Roadmap Towards Sustainable Building Practices
  5. Murali Gunasekaran, Kravchenko Ekaterina, Yuvaraj Divya, Avudaiappan Siva (2025-12)
    Next-Generation Green Construction:
    3D-Printed Geopolymer Concrete with Optimized Rheology, Mechanical Performance, and Environmental Efficiency
  6. Rodriguez Fabian, Vugteveen Caiden, Fross Xavier, Wei Hui et al. (2025-12)
    3D Printing of Cement-Based Materials Using Seawater for Simulated Marine Environments
  7. Muñoz-Sanguinetti Claudia, Vega-Coloma Mabel, Letelier Viviana, Marrero Madelyn et al. (2025-12)
    Environmental Footprint of 3D-Printed Concrete Using Recycled Materials
  8. Liu Xinhao, Hu Jiajun, Xiong Guiyan, Cundy Andrew et al. (2025-12)
    Long-Term Durability and Degradation Mechanisms of 3D Printed Geopolymers (3DPG) With/Without Healing Agents in Marine Environments
  9. Öztürk Ece, Ince Ceren, Borgianni Yuri, Nicolaides Demetris et al. (2025-12)
    Printability, Engineering Properties and Environmental Implications of 3D-Printed Cementitious Mortars Incorporating Hydrated Lime, Tile Powder and Accelerator
  10. Ataei Sarah, Jafari Amirhosein (2025-10)
    Comparative Environmental Impact Assessment of 3D Concrete Printing and Precast Techniques in Bridge Construction:
    A Case Study Analysis
  11. Yang Xinrui, Lakhal Othman, Belarouci Abdelkader, Merzouki Rochdi (2025-10)
    Adaptive Velocity Compensation for Optimal 3D Concrete Printing in Uncontrolled Environments
  12. Philip Nivin, Jędrzejewska Agnieszka, Mathew Ashitta, Uthuppan Susan (2025-09)
    Steel Fiber Reinforcement for Improved Structural Performance and Durability of 3D Printed Mortar in Marine Environments
  13. Elhag Ahmed, Mabrouk Abdelkader, Ghazouani Nejib, Nasir Umara (2025-09)
    Advances in Sustainable 3D-Printed Geopolymer Concrete:
    Materials, Performance, and Environmental Impact in Next Generation Green Construction
  14. Wang Yufei, Sun Junbo, Wang Xiangyu, Huang Bo et al. (2025-09)
    Environmental and Economic Evaluation of a Prefabricated 3D-Printed Structural Units Using Recycled Aggregates from Construction and Demolition Waste:
    A Case Study in China
  15. Marco Giancarlo, Cheung Lok (2025-09)
    Multimodal Large Language Models for Adaptive 3D Concrete Printing:
    Real-Time Control of Materials and Settings According to Performance Requirements and Environmental Conditions
  16. Bhagat Rajesh, Pande Prashant, Madurwar Kamlesh, Raut Jayant et al. (2025-09)
    Life Cycle Assessment of 3D-Printed Building Materials Towards Sustainability-Driven Optimization and Environmental Impact Analysis Using Computational Intelligence Techniques
  17. Ding Shengxuan, Li Jiren, Liu Yiming (2025-06)
    Study on Mechanical Properties and Environmental Benefits of 3D Printed Lean Magnesium Ore Concrete Filled Columns Based on Three-Dimensional Meso-Structure
  18. Senf Ferdinand, Javed Rezan, Funke Henrik, Gelbrich Sandra (2025-06)
    Enhanced Environmental Sustainability of 3D-Printed Concrete Mixtures Based on Calcium Sulfoaluminate (CSA) and Blast Furnace Cement (CEM III/B)
  19. Pereira Carolina, Vieira Henrique, Gonçalves Nuno, Ascensão Guilherme et al. (2025-05)
    Innovative Waste-Containing 3D-Printed Geopolymer Structures for Enhanced Acoustic Comfort in Built Environments
  20. Gribonval Alice, Pierre Maxime, Ducoulombier Nicolas, Sab Karam et al. (2025-05)
    Multi-Physics Modelling of 3D-Printed Concrete Evolution in Environmental Conditions
  21. Cavalcante Tiago, Toledo Filho Romildo, Mendoza Reales Oscar (2025-04)
    Rheological and Environmental Implications of Recycled Concrete Powder as Filler in Concrete 3D Printing
  22. Albrecht Sophie, Hellerbrand Stefan, Weininger Florian, Thiel Charlotte (2025-03)
    Possibilities for Reducing the Environmental Impact in the Construction Industry Using the Example of a 3D Printed Staircase
  23. Rajendran Naveenkumar, Runge Troy, Bergman Richard, Nepal Prakash et al. (2025-03)
    Economic and Environmental Impact Analysis of Cellulose Nanocrystal-Reinforced Cementitious Mixture in 3D Printing
  24. Albrecht Sophie, Hellerbrand Stefan, Weininger Florian, Thiel Charlotte (2025-02)
    Strategies for Minimizing Environmental Impact in Construction:
    A Case Study of a Cementitious 3D Printed Lost Formwork for a Staircase
  25. Arash Motalebi, Mohammad Aba, Golam Kabir (2025-01)
    Assessing the Environmental Impact of Building Houses in Remote Areas:
    3D Printing vs. Traditional Construction Techniques
  26. Liu Xinhao, Hu Jiajun, Guo Xiaolu (2025-01)
    Improved Interlayer-Bonding of 3D Printed Fiber-Reinforced Geopolymer by Healing-Agents:
    Properties, Mechanism, and Environmental Impacts
  27. Kuzmenko Kateryna, Roux Charlotte, Féraille Adélaïde (2025-01)
    Environmental Impact of 3D Concrete Printing
  28. Sun Junbo, Wang Yufei, Yang Xin, Wang Haihong et al. (2025-01)
    Red Mud Utilization in Fiber-Reinforced 3D Printed Concrete:
    Mechanical Properties and Environmental Impact Analysis
  29. Hassan Amer, Alomayri Thamer, Noaman Mohammed, Zhang Chunwei (2025-01)
    3D Printed Concrete for Sustainable Construction:
    A Review of Mechanical Properties and Environmental Impact
  30. Raza Muhammad, Besklubova Svetlana, Zhong Ray (2024-11)
    Comparative Environmental Value-Stream-Assessment of Off-Site and On-Site 3D Construction Printing Processes
  31. Bartaky Markus, Gosch Lukas, Stavric Milena (2024-11)
    Sustainable Temporary Housing:
    An Evaluation-Framework for Large-Scale 3D Printer for Adobe Construction in Challenging Environments
  32. You Dengyu, Kashani Alireza (2024-11)
    Effect of Environmental Conditions on Shrinkage-Induced Cracking of 3D Printed Mortar
  33. Motalebi Arash, Khondoker Mohammad, Kabir Golam (2024-10)
    Sustainable Structures Unveiled:
    Navigating the Environmental Landscape of 3D Printing in Construction
  34. Eid Zainab, Almerbati Nehal (2024-10)
    Methodologies to Assess the Environmental Impact of 3D Printed Buildings Using Construction Waste
  35. Sun Junbo, Zhang Yanling, Wu Qi, Wang Yufei et al. (2024-10)
    3D Printed Concrete Incorporating Waste-Rubber:
    Anisotropic Properties and Environmental Impact-Analysis
  36. Shen Kaige, Ding Tao, Cai Chen, Xiao Jianzhuang et al. (2024-09)
    Feasibility-Analysis of 3D Printed Concrete with Sludge-Incineration-Slag:
    Mechanical Properties and Environmental Impacts
  37. Baytak Tugba, Gdeh Tawfeeq, Jiang Zhangfan, Arce Gabriel et al. (2024-09)
    Rheological, Mechanical, and Environmental Performance of Printable Graphene-Enhanced Cementitious Composites with Limestone and Calcined Clay
  38. Ammann Rebecca, Gebhard Lukas, Thoma Karel, Mata-Falcón Jaime et al. (2024-09)
    Environmental Benefits of Concrete Floor Slabs Produced with Digitally Fabricated Formworks:
    A Case Study
  39. Palomba Martina, Esposito Laura, Villani Chiara, Wagner Eckhard (2024-09)
    Environmental Conditions Affecting the Shrinkage Behavior of Low Clinker 3D Printable Mortar
  40. Šahmenko Genādijs, Šinka Māris, Bumanis Girts, Sapata Alise et al. (2024-09)
    Ternary Gypsum-Cement-Pozzolan Composites for 3D Printing with Reduced Environmental Impact
  41. Srinivas Dodda, Panda Biranchi, Sitharam Thallak (2024-09)
    Comparative Study into the Inter-Layer Bond Strength of 3D Printed Mortar:
    Underwater vs. Air Environments
  42. Gümrük Idil, Wolfs Robert, Schröder Torsten, Salet Theo (2024-09)
    Circular Design-Strategies for 3D Concrete Printing in the Built Environment
  43. Geng Zifan, Zhang Lizhi, Wu Zhiwen, Tay Yi et al. (2024-07)
    Mechanical Properties and Additive Manufacturing of Alkali-Activated Lunar Regolith in Artificial Lunar Environments
  44. Ye Junhong, Zhuang Zicheng, Teng Fei, Yu Jie et al. (2024-07)
    Comparative Environmental-Assessment of 3D Concrete Printing with Engineered Cementitious Composites
  45. Assunção Badan Julie, Chadha Kunaljit, Vasey Lauren, Brumaud Coralie et al. (2024-06)
    Contribution of Production Processes in Environmental Impact of Low-Carbon Materials Made by Additive Manufacturing
  46. Mohamed Rania, Mohamed Abdelaziz (2024-05)
    Exploring the Environmental Benefits of 3D Printing Technology in Concrete Construction:
    A Review
  47. Bodur Burak, Mecit Işık Muhammet, Benli Ahmet, Bayrak Barış et al. (2024-05)
    Durability of Green Rubberized 3D Printed Lightweight Cement Composites Reinforced with Micro-Attapulgite and Micro-Steel-Fibers:
    Printability and Environmental Perspective
  48. Duarte Gonçalo, Duarte José, Watson Nathan, Bilén Sven et al. (2024-04)
    Advancing 3D Concrete Printing for Extreme Environments:
    A Focus on Alaska
  49. Carcassi Olga, Maierdan Yierfan, Akemah Tashania, Kawashima Shiho et al. (2024-03)
    Maximizing Fiber-Content in 3D Printed Earth Materials:
    Printability, Mechanical, Thermal and Environmental Assessments
  50. Chadha Kunaljit, Dubor Alexandre, Cabay Edouard, Tayoun Yara et al. (2024-01)
    Additive Manufacturing for the Circular Built Environment:
    Towards Circular Construction with Earth-Based Materials
  51. Khan Mehran, McNally Ciaran (2023-11)
    A Holistic Review on the Contribution of Civil Engineers for Driving Sustainable Concrete Construction in the Built Environment
  52. Zhao Zengfeng, Ji Chenyuan, Xiao Jianzhuang, Yao Lei et al. (2023-11)
    A Critical Review on Reducing the Environmental Impact of 3D Printing Concrete:
    Material-Preparation, Construction-Process and Structure-Level
  53. Shahmirzadi Mohsen, Gholampour Aliakbar, Kashani Alireza, Ngo Tuan (2023-10)
    Geopolymer Mortars for Use in Construction 3D Printing:
    Effect of LSS, Graphene-Oxide and Nano-Clay at Different Environmental Conditions
  54. Genc Gokhan, Demircan Ruya, Beyhan Figen, Kaplan Gökhan (2023-10)
    Assessment of the Sustainability and Producibility of Adobe-Constructions Reinforced with Ca-Based Binders:
    Environmental Life-Cycle-Analysis and 3D Printability
  55. Meng Qingcheng, Hu Lei, Li Mingjian, Qi Xin (2023-09)
    Assessing the Environmental Impact of Building Life Cycle:
    A Carbon-Reduction-Strategy Through Innovative Design, Intelligent Construction, and Secondary Utilization
  56. Heywood Kate, Nicholas Paul (2023-06)
    Sustainability and 3D Concrete Printing:
    Identifying a Need for a More Holistic Approach to Assessing Environmental Impacts
  57. Fernandez Letízia, Caldas Lucas, Mendoza Reales Oscar (2023-05)
    Environmental Evaluation of 3D Printed Concrete Walls Considering the Life Cycle Perspective in the Context of Social Housing
  58. Qu Zhengyao, Yu Qingliang, Ong Ghim, Cardinaels Ruth et al. (2023-04)
    3D Printing Concrete Containing Thermal Responsive Gelatin:
    Towards Cold Environment Applications
  59. Khan Shoukat, Jassim Muhammad, İlcan Hüseyin, Şahin Oğuzhan et al. (2023-04)
    3D Printing of Circular Materials:
    Comparative Environmental Analysis of Materials and Construction Techniques
  60. Seo Eun-A, Kim Won-Woo, Kim Sung-Wook, Kwon Hongkyu et al. (2023-03)
    Mechanical Properties of 3D Printed Concrete with Coarse Aggregates and Polypropylene-Fiber in the Air and Underwater Environment
  61. Zhang Ruo-Chen, Wang Li, Xue Xuan, Ma Guowei (2023-02)
    Environmental Profile of 3D Concrete Printing Technology in Desert Areas via Life Cycle Assessment
  62. Ahmed Ghafur (2023-01)
    A Review of 3D Concrete Printing:
    Materials and Process Characterization, Economic Considerations and Environmental Sustainability
  63. Noaimat Yazeed, Ghaffar Seyed, Chougan Mehdi, Kheetan Mazen (2022-12)
    A Review of 3D Printing Low-Carbon Concrete with One-Part Geopolymer:
    Engineering, Environmental and Economic Feasibility
  64. Salandin Andrea, Quintana-Gallardo Alberto, Gómez-Lozano Vicente, Guillén-Guillamón Ignacio (2022-10)
    The First 3D Printed Building in Spain:
    A Study on Its Acoustic, Thermal and Environmental Performance
  65. Naboni Roberto, Breseghello Luca, Sanin Sandro (2022-09)
    Environment-Aware 3D Concrete Printing through Robot-Vision
  66. Boukhelf Fouad, Sebaibi Nassim, Boutouil Mohamed, Yoris-Nobile Adrian et al. (2022-07)
    On the Properties Evolution of Eco-Material Dedicated to Manufacturing Artificial Reef via 3D Printing:
    Long-Term Interactions of Cementitious Materials in the Marine Environment
  67. Rosendahl Philipp, Wolf Alexander (2022-07)
    The Business Case for 3D Printing in the Built Environment
  68. Jipa Mihail-Andrei, Reiter Lex, Flatt Robert, Dillenburger Benjamin (2022-07)
    Environmental Stress Cracking of 3D Printed Polymers Exposed to Concrete
  69. Moelich Gerrit, Rensburg Johannes, Kruger Jacques, Combrinck Riaan (2022-06)
    The Environment’s Effect on the Inter-Layer Bond Strength of 3D Printed Concrete
  70. Wangler Timothy, Aguilar Sanchez Asel, Anton Ana-Maria, Dillenburger Benjamin et al. (2022-06)
    Two Year Exposure of 3D Printed Cementitious Columns in a High-Alpine Environment
  71. Favier Aurélie, Petit Agnès (2022-06)
    Strategies for Reducing the Environmental Footprint of Additive Manufacturing via Sprayed Concrete
  72. Rodriguez Fabian, Lopez Cristian, Wang Yu, Olek Jan et al. (2022-06)
    Evaluation of Durability of 3D Printed Cementitious Materials for Potential Applications in Structures Exposed to Marine Environments
  73. Gislason Styrmir, Bruhn Simon, Breseghello Luca, Sen Burak et al. (2022-06)
    Porous 3D Printed Concrete Beams Show an Environmental Promise:
    A Cradle-to-Grave Comparative Life Cycle Assessment
  74. Kuzmenko Kateryna, Ducoulombier Nicolas, Féraille Adélaïde, Roussel Nicolas (2022-05)
    Environmental Impact of Extrusion-Based Additive Manufacturing:
    Generic Model, Power-Measurements and Influence of Printing-Resolution
  75. 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
  76. Ruffray Nicolas, Reiter Lex, Flatt Robert (2022-04)
    Overcoming Environmental Stress-Cracking of FDM 3D Printed Formwork for Counter-Pressure Casting of Concrete
  77. Zhang Xinyue, Cui Weijiu, Qu Chengping, Wang Sheng et al. (2022-04)
    Discussion on Key Problems of 3D Printing Concrete in Coastal Environment
  78. Moelich Gerrit, Kruger Jacques, Combrinck Riaan (2022-04)
    A Plastic Shrinkage Cracking-Risk-Model for 3D Printed Concrete Exposed to Different Environments
  79. 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
  80. Mohan Manu, Rahul Attupurathu, Dam Benjamin, Zeidan Talina et al. (2022-02)
    Performance Criteria, Environmental Impact and Cost-Assessment for 3D Printable Concrete Mixtures
  81. Meisel Nicholas, Watson Nathan, Bilén Sven, Duarte José et al. (2022-02)
    Design and System Considerations for Construction-Scale Concrete Additive Manufacturing in Remote Environments via Robotic-Arm-Deposition
  82. Ma Lei, Zhang Qing, Jia Zijian, Liu Chao et al. (2021-11)
    Effect of Drying Environment on Mechanical Properties, Internal RH and Pore-Structure of 3D Printed Concrete
  83. Guimarães Ana, Delgado João, Lucas Sandra (2021-11)
    Thermal and Environmental Benefits of 3D Printing on Building Construction
  84. Abdalla Hadeer, Fattah Kazi, Abdallah Mohamed, Tamimi Adil (2021-10)
    Environmental Footprint and Economics of a Full-Scale 3D Printed House
  85. Said F., Eldwib Donia, Zaytoun M., Elsalam A. et al. (2021-05)
    3D Printing Concrete Incoroprating Environmentally Friendly Materials
  86. Baz Bilal, Aouad Georges, Kleib Joelle, Bulteel David et al. (2021-04)
    Durability-Assessment and Micro-Structural Analysis of 3D Printed Concrete Exposed to Sulfuric-Acid Environments
  87. 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
  88. Kuzmenko Kateryna, Gaudillière-Jami Nadja, Féraille Adélaïde, Dirrenberger Justin et al. (2020-09)
    Assessing the Environmental Viability of 3D Concrete Printing Technology
  89. Souza Marcelo, Ferreira Igor, Moraes Elisângela, Senff Luciano et al. (2020-09)
    3D Printed Concrete for Large-Scale Buildings:
    An Overview of Rheology, Printing Parameters, Chemical Admixtures, Reinforcements, and Economic and Environmental Prospects
  90. Han Yilong, Yang Zhihan, Ding Tao, Xiao Jianzhuang (2020-08)
    Environmental and Economic Assessment on 3D Printed Buildings with Recycled Concrete
  91. Kuzmenko Kateryna, Féraille Adélaïde, Baverel Olivier, Roussel Nicolas (2020-07)
    Environmental Impacts of 6-Axis Robotic Arm for 3D Concrete Printing
  92. Rashid Ans, Khan Shoukat, Ghamdi Sami, Koç Muammer (2020-06)
    Additive Manufacturing:
    Technology, Applications, Markets, and Opportunities for the Built Environment
  93. 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
  94. Weng Yiwei, Li Mingyang, Ruan Shaoqin, Wong Teck et al. (2020-03)
    Comparative Economic, Environmental and Productivity-Assessment of a Concrete Bathroom Unit Fabricated Through 3D Printing and a Pre-Cast Approach
  95. Agustí-Juan Isolda, Jipa Mihail-Andrei, Habert Guillaume (2018-11)
    Environmental Assessment of Multi-Functional Building Elements Constructed with Digital Fabrication Techniques
  96. Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
    Vision of 3D Printing with Concrete:
    Technical, Economic and Environmental Potentials
  97. Panda Biranchi, Paul Suvash, Lim Jian, Tay Yi et al. (2017-08)
    Additive Manufacturing of Geopolymer for Sustainable Built Environment
  98. Anjum Taqdees, Dongre Poorvesh, Misbah Fozail, Nanyam V. (2017-06)
    Purview of 3DP in the Indian Built Environment Sector
  99. Pawar Vijay, Stuart-Smith Robert, Scully Peter (2017-04)
    Toward Autonomous Architecture:
    The Convergence of Digital Design, Robotics, and the Built Environment
  100. Agustí-Juan Isolda, Müller Florian, Hack Norman, Wangler Timothy et al. (2017-04)
    Potential Benefits of Digital Fabrication for Complex Structures:
    Environmental Assessment of a Robotically Fabricated Concrete Wall
  101. Agustí-Juan Isolda, Habert Guillaume (2016-11)
    Environmental Design Guidelines for Digital Fabrication
  102. Agustí-Juan Isolda, Habert Guillaume (2016-04)
    An Environmental Perspective on Digital Fabrication in Architecture and Construction
  103. Kestelier Xavier, Buswell Richard (2009-10)
    A Digital Design Environment for Large-Scale Rapid Manufacturing