Skip to content

#binder

Keywords by Co - Occurrence

  1. Kumar Sandeep, Dixit Anjaneya (2026-04)
    3D-Printable Concrete Using Stabilized Soil:
    Effect of Binders and Curing Regimes on the Engineering Performance
  2. Šerelis Evaldas, Vaitkevičius Vitoldas, Korat Bensa Lidija, Serjun Vesna et al. (2026-03)
    Effect of Chemical and Physico-Chemical Activation on the Properties of 3D Printed Concrete with a Low-Cement Multicomponent Binder
  3. Cheng Shengbo, Grimm Benedikt, Unterreiner Michael, Hechtl Christian et al. (2026-03)
    Properties of the Transition Region in 3D Printed Functionally Graded Concrete Through Near Nozzle Binder-Aggregate Mixing
  4. Mishra Sanjeet, Das Bibhuti, Chandrasekaran Rajasekaran, Barbhuiya Salim (2026-02)
    Tuning the Hydration and Printability in Nano-Modified Quaternary Binder Systems for 3D-Printed Mortar
  5. Hasan Kamrul, Alias Aizat, Hasan Mehedi, Yahaya Fadzil et al. (2026-02)
    Designing 3D-Printed Concrete with Ternary Blended Mortars Incorporating Fly Ash and Silica Fume:
    Effects of Low Water-Binder Ratios on Workability and Strength
  6. Patel Aniket, Santhanam Manu (2026-01)
    Rheological and Fresh-State Characterization for 3D-Printable Concrete:
    Evaluating Printability Across Different Binder Systems
  7. Moussa Nada, Haim Mohamed, Rida Loubaba (2026-01)
    Limestone–Calcined Clay:
    An Alternative Binder for 3D Concrete Printing
  8. Hechtl Christian, Dahlenburg Maximilian, Bos Freek, Kränkel Thomas et al. (2025-12)
    Adaptive-Binder-Aggregate Mixing (ABAM):
    Concept for Extrusion-Based Multi-Material 3D Concrete Printing
  9. Xue Jia-Chen, Wang Wei-Chien, Lee Ming-Gin, Huang Chia-Yun et al. (2025-12)
    Effect of Aggregate-to-Binder Ratio on 3D Printed Concrete:
    Printability, Mechanics, and Shrinkage
  10. Abbas Yassir, Alsaif Abdulaziz (2025-11)
    Explainable Data-Driven Modeling for Optimized Mix Design of 3D-Printed Concrete:
    Interpreting Nonlinear Synergies Among Binder Components and Proportions
  11. Rudziewicz Magdalena, Maroszek Marcin, Hebda Marek (2025-09)
    Comparison of Porosity and Thermal Conductivity of Concrete and Alkali-Activated Hybrid Binders in 3D-Printed Fiber-Reinforced Foamed Composites
  12. Chen Yanjuan, Cheikh Khadija, Rahier Hubert (2025-07)
    Methodology for the Design and Optimization of Potassium Silicate-Activated Slag Used as the Binder of 3D Printable Materials
  13. Wang Tongcai, Gu Guangshuai, Zhang Rihan, Cui Qianshun et al. (2025-07)
    Additive Manufacturing of Lunar Regolith via Resin-Based Binder and Material Extrusion Method for High-Performance In-Situ Manufacturing on the Moon
  14. Kaur Zinnia, Goyal Shweta, Kwatra Naveen, Bera Tarun (2025-07)
    Pore Structure Analysis and Durability Performance of Sustainable 3D Printed Concrete Incorporating Fly Ash and Limestone Calcined Clay Based Binders
  15. Liu Nana, Wang Jie (2025-07)
    Experimental Study on the Effect of Water-Binder Ratio on 3D Printing Form of Concrete Mortar
  16. Srinivas Dodda, Panda Biranchi, Suraneni Prannoy, Sitharam Thallak (2025-06)
    Mix Design Optimization of 3D-Printed Cementitious Composites for Marine Applications:
    Impact of Binder Composition, Accelerated Carbonation, and PVA Fibers on Strength and Durability
  17. Surehali Sahil, Venkatachalam Akshay, Divigalpitiya Ranjith, Kumar Aditya et al. (2025-06)
    Ultra-Low Dosages of Novel Graphene Types Enhance the Rheological Properties and Buildability of 3D Printed Binders
  18. Avşar Yunus, Uysal Mücteba, Akca Abdullah (2025-05)
    Improvement of 3D Printing Properties of MgO Derived Binders by CO2 Curing in Hardened State
  19. Beigh Mirza, Signorini Cesare, Rauf Asim, Schröfl Christof et al. (2025-04)
    Intrinsic Rheological Behavior of Limestone Calcined Clay Cementitious (LC3) Binders for Automated Construction:
    Effect of Calcium Sulfate Varieties
  20. Shi Ye, Han Li, Wu Pengtao, Dai Kaichao et al. (2025-04)
    Design of 3D Printing Green Ultra-High Performance Concrete Based on Binder System Optimization
  21. Gurunandan M., Nedunuri Aparna, Tanwar Jayant, Nanthagopalan Prakash et al. (2025-02)
    Development of 3D-Printable Alkali-Activated GGBFS and Fly-Ash-Binder-Based Mortars with Concrete-Demolition-Waste as Aggregates
  22. Vlieger Jentel, Blaakmeer Jan, Gruyaert Elke, Cizer Özlem (2025-01)
    Assessing Static and Dynamic Yield-Stress of 3D Printing Mortar with Recycled Sand:
    Influence of Sand-Geometry, Fineness Modulus, and Water-to-Binder Ratio
  23. Brunner Kim, Stengel Thorsten, Kustermann Andrea (2025-01)
    3D Particle-Bed Printing Using Different Cementitious Binders and Recycled Sand
  24. Yan Yufei, Zhang Mo, Ma Guowei, Sanjayan Jay (2024-12)
    An Eco-Friendly Ultra-High-Performance Geopolymer Concrete with Quaternary Binders for 3D Printing
  25. Tarhan Yeşim, Tarhan İsmail, Şahin Remzi (2024-12)
    Comprehensive Review of Binder Matrices in 3D Printing Construction:
    Rheological Perspectives
  26. Liu Junxing, Li Peiqi, Piao Taiyan, Im Sumin et al. (2024-12)
    High-Alumina Cementitious Materials for Binder-Jetting 3D Printing:
    Exploring Suitable Mixing-Ratio and Curing-Solution for Improving Mechanical Properties and Hydration-Reaction
  27. Gurunandan M., Mala Hiranya, Nanthagopalan Prakash (2024-12)
    Effect of Water-to-Binder, Aggregate-to-Binder-Ratio and Admixtures on Printability and Mechanical Properties of 3D Printable Mortar Mixtures
  28. Wan Linxiaoyi, Liu Jingyang, Bard Joshua, Cupkova Dana (2024-11)
    Towards Adaptive Additive Manufacturing:
    Image-Based Monitoring for Binder Jet 3D Printing of Coarse Composite Concrete Powders
  29. Gholami Shayan, Kim Yong-Rak, Salehi Faezeh (2024-10)
    Strengthening and 3D Printing of Magnesium-Silicate-Hydrate Binder for Martian Construction
  30. Over Derya, Ozbakan Nesil, Bustani Mehmet, Karali Bulut (2024-10)
    An Investigation of Rheological Properties and Sustainability of Various 3D Printing Concrete Mixtures with Alternative Binders and Rheological Modifiers
  31. Wang Xianggang, Dong Enlai, Jia Zijian, Jia Lutao et al. (2024-09)
    Specimen-Size-Effect on Compressive Strength of 3D Printed Concrete Containing Coarse Aggregate with Varying Water-to-Binder-Ratios
  32. Remke Sebastian, Kandy Sharu, Sant Gaurav, Gädt Torben (2024-09)
    A Hybrid Binder Concept for a Swift Liquid-to-Solid Transition in 3D Printing of Suspensions
  33. Hierden Naomi, Yu Q., Brouwers Henricus (2024-09)
    Mechano-Chemically Activated Local Clays as Sustainable Binder Replacement for 3D Concrete Mixtures
  34. Kondepudi Kala, Gomzyakov Albert, Liebscher Marco, Mechtcherine Viktor (2024-09)
    3D Printing by Selective Activation of Geopolymer-Based Binders
  35. Maierdan Yierfan, Armistead Samuel, Mikofsky Rebecca, Carcassi Olga et al. (2024-09)
    Exploring Locust Bean Gum as a Robust Binder and Rheology Modifier for Earth Concrete
  36. Oliveira Romano Roberto, Lima Francisco, Mesquita José, Pan Eduardo et al. (2024-09)
    Extended Rheological Characterization as a Tool for Low-Binder 3D Printing Compositions
  37. Matos Paulo, Schackow Adilson, Safanelli Nicollas, Zat Tuani (2024-09)
    Developing Binders with Ceramic Waste for 3DCP Mixes
  38. Perrot Arnaud, Jacquet Yohan, Caron Jean-François, Mesnil Romain et al. (2024-08)
    Snapshot on 3D Printing with Alternative Binders and Materials:
    Earth, Geopolymers, Gypsum and Low-Carbon Concrete
  39. Kamakshi Tippabhotla, Thakur Manideep, Subramaniam Kolluru (2024-07)
    Formulating Printable Concrete Mixtures Based on Paste-Rheology and Aggregate-Content:
    Application to Alkali-Activated Binders
  40. Maierdan Yierfan, Zhao Diandian, Choksi Pooja, Garmonina Maria et al. (2024-05)
    Rheology, 3D Printing, and Particle-Interactions of Xanthan-Gum-Clay Binder for Earth Concrete
  41. Shoaei Parham, Kjøniksen Anna-Lena, Pamies Ramón, Pilehvar Shima (2024-05)
    Characterization of 3D Printable Geopolymer Mortars:
    Effect of Binder Composition and Basalt-Fiber-Reinforcement
  42. Kamakshi Tippabhotla, Subramaniam Kolluru (2024-05)
    Rheology-Control and 3D Concrete Printing with Fly Ash-Based Aqueous Nano-Silica Enhanced Alkali-Activated Binders
  43. Ralston Nadia, Gupta Shashank, Moini Mohamadreza (2024-05)
    3D Printing of Architected Calcium-Silicate Binders with Enhanced and In-Situ Carbonation
  44. Yang Jin, Zhai Gaoyuan, He Xingyang, Tang Yuanzhen et al. (2024-05)
    Properties and Microstructure of a Low-Carbon Clinker-Free Cementitious Binder and Its Extrusion-Based Printing Performance
  45. Shahid Mursaleen, Sglavo Vincenzo (2024-03)
    Binder-Jetting 3D Printing of Binary Cement-Siliceous Sand Mixture
  46. Shi Yifan, Jia Lutao, Jia Zijian, Ma Lei et al. (2024-03)
    Early-Age Inhomogeneous Deformation of 3D Printed Concrete:
    Characteristics and Influences of Superplasticizer and Water-Binder Ratio
  47. Colyn Markus, Zijl Gideon, Babafemi Adewumi (2024-02)
    Fresh and Strength Properties of 3D Printable Concrete Mixtures Utilising a High Volume of Sustainable Alternative Binders
  48. Tao Yaxin, Mohan Manu, Rahul Attupurathu, Schutter Geert et al. (2024-02)
    Hydration and Microstructure of Calcium-Sulfoaluminate-Portland-Cement Binder Systems for Set-on-Demand Applications
  49. Kruppa Henning, Kalthoff Matthias, Vollpacht Anya, Matschei Thomas (2023-12)
    Development of an Alkali-Activated Binder for the Extrusion Process
  50. Remke Sebastian, Sant Gaurav, Gädt Torben (2023-12)
    Investigation of a Hybrid Binder System for Large-Scale 3D Printing
  51. Chernysheva Natalia, Shatalova Svetlana, Lesovik Valeriy, Kozlov Pavel (2023-11)
    Deformation Characteristics of Dense and Foamed Mortars Based on Cement and Gypsum-to-Cement Binders for 3D Printing
  52. Ibrahim Kamoru, Zijl Gideon, Babafemi Adewumi (2023-10)
    Comparative Studies of LC³- and Fly-Ash-Based Blended Binders in Fiber-Reinforced Printed Concrete:
    Rheological and Quasi-Static Mechanical Characteristics
  53. 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
  54. Suryanto Benny, Higgins J., Aitken M., Tambusay Asdam et al. (2023-10)
    Developments in Portland Cement/GGBS Binders for 3D Printing Applications:
    Material-Calibration and Structural Testing
  55. Kruppa Henning, Kalthoff Matthias, Neef Tobias, Reißig Silvia et al. (2023-06)
    Alkali-Activated Binder-Requirements for Extrusion and 3D Printing of Carbon-Reinforced Concrete
  56. Tao Yaxin, Rahul Attupurathu, Mohan Manu, Schutter Geert et al. (2023-05)
    Enhancing Mechanical Performance of Twin-Pipe Printable Concrete Using a Binary Binder System
  57. Xu Nuoyan, Qian Ye (2023-04)
    Effects of Fiber-Volume Fraction, Fiber Length, Water-Binder Ratio, and Nano-Clay Addition on the 3D Printability of Strain-Hardening Cementitious Composites
  58. Onanuga Babajide, Biernacki Joseph (2023-03)
    Assessing the Robustness of Cement-Hydrogel-Based Binders as 3D Printing Materials
  59. Beersaerts Glenn, Hertel Tobias, Lucas Sandra, Pontikes Yiannis (2023-02)
    Promoting the Use of Fe-Rich Slag in Construction:
    Development of a Hybrid Binder for 3D Printing
  60. Peng Yiming, Unluer Cise (2022-12)
    Development of Alternative Cementitious Binders for 3D Printing Applications:
    A Critical Review of Progress, Advantages and Challenges
  61. Bhattacherjee Shantanu, Jain Smrati, Santhanam Manu (2022-11)
    Criticality of Binder-Aggregate Interaction for Buildability of 3D Printed Concrete Containing Limestone-Calcined-Clay
  62. Das Arnesh, Reiter Lex, Mantellato Sara, Flatt Robert (2022-10)
    Early-Age Rheology and Hydration-Control of Ternary Binders for 3D Printing Applications
  63. Kamakshi Tippabhotla, Subramaniam Kolluru (2022-06)
    Developing Printable Fly-Ash-Slag Geopolymer Binders with Rheology Modification
  64. Weger Daniel, Talke Daniel, Lowke Dirk, Henke Klaudius et al. (2022-06)
    Additive Manufacturing of Free-Formed Concrete Elements by Selective Binding with Calcium Silicate-Based Cements
  65. Ma Guowei, Yan Yufei, Zhang Mo, Sanjayan Jay (2022-05)
    Effect of Steel-Slag on 3D Concrete Printing of Geopolymer with Quaternary Binders
  66. Shakor Pshtiwan, Chu Shaohua, Puzatova (nee Sharanova) Anastasiia, Dini Enrico (2022-01)
    Review of Binder-Jetting 3D Printing in the Construction Industry
  67. Min Kyung-Sung, Park Kwang-Min, Lee Bong-Chun, Roh Young-Sook (2021-12)
    Chloride Diffusion by Build Orientation of Cementitious Material-Based Binder-Jetting 3D Printing Mortar
  68. Yuan Qiang, Zuo Shenghao, Li Zemin, Shi Caijun et al. (2021-11)
    Optimizing Three-Dimensional Printing Binder Composed of Ordinary-Portland-Cement and Calcium-Sulfoaluminate-Cement with Retarders
  69. Kondepudi Kala, Subramaniam Kolluru (2021-11)
    Extrusion-Based Three-Dimensional Printing Performance of Alkali-Activated Binders
  70. Nair Sooraj, Panda Subhashree, Tripathi Avinaya, Neithalath Narayanan (2021-06)
    Relating Print-Velocity and Extrusion-Characteristics of 3D Printable Cementitious Binders:
    Implications Towards Testing Methods
  71. Na Okpin, Kim Kangmin, Lee Hyunjoo, Lee Hyunseung (2021-05)
    Printability and Setting-Time of CSA Cement with Na2SiO3 and Gypsum for Binder-Jetting 3D Printing
  72. Kondepudi Kala, Subramaniam Kolluru (2021-02)
    Formulation of Alkali-Activated Fly-Ash-Slag Binders for 3D Concrete Printing
  73. Weger Daniel, Gehlen Christoph (2021-01)
    Particle-Bed Binding by Selective Paste-Intrusion:
    Strength and Durability of Printed Fine-Grain Concrete Members
  74. Archez Julien, Texier-Mandoki N., Bourbon X., Caron Jean-François et al. (2020-08)
    Adaptation of the Geopolymer Composite Formulation Binder to the Shaping Process
  75. Yu Shiwei, Du Hongjian, Sanjayan Jay (2020-07)
    Aggregate-Bed 3D Concrete Printing with Cement-Paste Binder
  76. Odaglia Pietro, Voney Vera, Dillenburger Benjamin, Habert Guillaume (2020-07)
    Advances in Binder-Jet 3D Printing of Non-Cementitious Materials
  77. Voney Vera, Odaglia Pietro, Brumaud Coralie, Dillenburger Benjamin et al. (2020-07)
    Geopolymer Formulation for Binder-Jet 3D Printing
  78. Hirsch Tamino, Dorn Tobias, Ehm Clemens, Stephan Dietmar (2020-07)
    Comparison of Printable Inorganic Binders:
    Key Properties for 3D Printable Materials
  79. Hosseini Ehsan, Zakertabrizi Mohammad, Korayem Asghar, Zaker Zafar et al. (2020-06)
    Orbital Overlapping Through Induction Bonding Overcomes the Intrinsic Delamination of 3D Printed Cementitious Binders
  80. 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
  81. Chougan Mehdi, Ghaffar Seyed, Jahanzat Mohammad, Albar Abdulrahman et al. (2020-04)
    The Influence of Nano-Additives in Strengthening Mechanical Performance of 3D Printed Multi-Binder Geopolymer Composites
  82. Pierre Alexandre, Perrot Arnaud (2019-04)
    3D Printing by Selective Binding in a Particle-Bed:
    Principles and Challenges
  83. 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
  84. 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
  85. 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
  86. 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
  87. Yang Pu, Nair Sooraj, Neithalath Narayanan (2018-09)
    Discrete Element Simulations of Rheological Response of Cementitious Binders as Applied to 3D Printing
  88. 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