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#hydration

Keywords by Co - Occurrence

  1. Luo Jianfen, Wang Qidong, Wang Lijia, Fang Mingyue (2026-03)
    Effects of MXene on the Hydration Process, Pore Structure and Mechanical Performance of 3D-Printed Cementitious Materials
  2. 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
  3. 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
  4. Zhao Yu, Shen Guanghai, Zhu Lingli, Ding Yahong et al. (2025-11)
    Multi-Scale Analysis of 3D Printable High-Strength Engineered Cementitious Composite with Carbon and Polyethylene Fibers:
    Rheology, Printability and Hydration Kinetics in Structural Components
  5. Zhang Jiao-Long, Yuan Yong, Fatoyinbo Imoleayo, Zhou Lujie et al. (2025-11)
    3D-Printable Mortars Incorporating Municipal Solid Waste Incineration Bottom Ash:
    Linking Hydration to Extrudability and Mechanical Performance
  6. Safanelli Nicollas, Schackow Adilson, Effting Carmeane, Matos Paulo (2025-09)
    The Effect of Crystalline Nanocellulose on the Rheology, Hydration of Cement Pastes, and Buildability of 3D-Printed Concrete
  7. Saravanan Pradeep, Ramaswamy Ananth (2025-09)
    Early Age Creep Behavior of 3D Printable Mortar:
    Hydration and Viscoelasticity Coupling Model
  8. Lin Yini, Yan Jiachuan, Sun Ming, Tang Boyang et al. (2025-08)
    Effects of Waste Glass Powder on Printability, Hydration and Microstructure of 3D Printing Concrete
  9. Wang Chaofan, Chen Bing, Wang Yong, Vo Thanh et al. (2025-08)
    Influencing Mechanism of Magnesium-to-Phosphate Ratio on the Rheology and Microstructure Development of 3D-Printed Magnesium Phosphate Cement at Early Hydration
  10. Jin Yuan, Jiang Chengzhi, Gan Xingyu, Sun Zhaoyang et al. (2025-07)
    Enhancing the Printability of 3D Printed White Cementitious Materials with Accelerators:
    Evolution of Early-Age Hydration and Rheology
  11. Sikora Paweł, Skibicki Szymon, Chougan Mehdi, Szewczyk Piotr et al. (2025-03)
    Silica-Coated Admixtures of Bismuth and Gadolinium Oxides for 3D Printed Concrete Applications:
    Rheology, Hydration, Strength, Microstructure, and Radiation Shielding Perspective
  12. Das Arnesh, Wenger Cedric, Walpen Lukas, Flatt Robert (2025-02)
    Early-Age Hydration of Accelerated Low-Carbon Cements for Digital Fabrication
  13. 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
  14. Ji Yianliang, Pott Ursula, Mezhov Alexander, Rößler Christiane et al. (2024-11)
    Modelling and Experimental Study on Static Yield-Stress-Evolution and Structural Build-Up of Cement-Paste in Early-Stage of Cement Hydration
  15. Zhi Zhenzhen, Guo Yanfei, Qi Huahui, Tan Hongbo et al. (2024-11)
    Effect of Alkali-Metal-Sulfates on Hydration Properties of Alpha-Calcium-Sulfate-Hemihydrate for 3D Printing
  16. Yang Yekai, Zhang Chiyu, Liu Zhongxian, Dong Liang et al. (2024-10)
    Effect of Hydration Process on the Inter-Layer Bond Tensile Mechanical Properties of Ultra-High-Performance Concrete for 3D Printing
  17. Federowicz Karol, Cendrowski Krzysztof, Sikora Paweł (2024-10)
    Low-Carbon Cementitious Composite Incorporated with Biochar and Recycled Fines Suitable for 3D Printing Applications:
    Hydration, Shrinkage and Early-Age Performance
  18. Gholami Shayan, Kim Yong-Rak, Salehi Faezeh (2024-10)
    Strengthening and 3D Printing of Magnesium-Silicate-Hydrate Binder for Martian Construction
  19. Brunner Kim, Tandon Kai, Stengel Thorsten (2024-09)
    Hydration Characteristics of 3D Particle-Bed Printed Cementitious Specimens
  20. Peng Yiming, Unluer Cise (2024-07)
    Development of 3D Printed Magnesium-Silicate-Hydrate-Cement Mixes Involving Metakaolin as a Substitute for Silica-Source
  21. Jakob Cordula, Rudolph Jennifer, Wolf Julian, Neubauer Jürgen (2024-06)
    Hydration of a Two-Component CSA-OPC-Mix-Timing of Component Blending & Setting-on-Demand
  22. Tiwari Adarsh, Pratapa Phanisri, Santhanam Manu (2024-03)
    Lattice Concrete:
    3D Printed Periodic Cellular Structures Through Selective Cement-Hydration
  23. 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
  24. Jia Lutao, Jia Zijian, Zhang Zedi, Tang Zhenzhong et al. (2024-02)
    Effect of Recycled Brick-Powder with Various Particle-Features on Early-Age Hydration, Water-State, and Rheological Properties of Blended Cement-Paste in the Context of 3D Printing
  25. Bayat Hamid, Kashani Alireza (2023-09)
    Analysis of Rheological Properties and Printability of a 3D Printing Mortar Containing Silica-Fume, Hydrated Lime, and Blast-Furnace-Slag
  26. Miranda Luiza, Marchesini Flávio, Lesage Karel, Schutter Geert (2022-12)
    The Evolution of the Rheological Behavior of Hydrating Cement Systems:
    Combining Constitutive Modeling with Rheometry, Calorimetry and Mechanical Analyses
  27. Rubin Ariane, Quintanilha Lucas, Repette Wellington (2022-11)
    Influence of Structuration-Rate, with Hydration-Accelerating Admixture, on the Physical and Mechanical Properties of Concrete for 3D Printing
  28. Che Yujun, Yang Huashan (2022-10)
    Hydration Products, Pore-Structure, and Compressive Strength of Extrusion-Based 3D Printed Cement-Pastes Containing Nano-Calcium-Carbonate
  29. Das Arnesh, Reiter Lex, Mantellato Sara, Flatt Robert (2022-10)
    Early-Age Rheology and Hydration-Control of Ternary Binders for 3D Printing Applications
  30. Chen Yu, Toosumran Nuttapon, Chehab Noura, Spanjers Henri et al. (2022-10)
    Feasibility Study of Using Desalination-Brine to Control the Stiffness and Early-Age Hydration of 3D Printable Cementitious Materials
  31. Ghantous Rita, Valadez-Carranza Yvette, Reese Steven, Weiss William (2022-06)
    Impact of Drying of 3D Printed Cementitious Pastes on Their Degree of Hydration
  32. Mohan Manu, Rahul Attupurathu, Tao Yaxin, Schutter Geert et al. (2022-06)
    Hydration Re-Initiation of Borated CSA Systems with a Two-Stage Mixing Process:
    An Application in Extrusion-Based Concrete 3D Printing
  33. Harbouz Ilhame, Rozière Emmanuel, Yahia Ammar, Loukili Ahmed (2022-02)
    Printability-Assessment of Cement-Based Materials Based on Rheology, Hydration Kinetics, and Viscoelastic Properties
  34. Jones Scott, Hipp Julie, Allen Andrew, Gagnon Cedric (2021-12)
    Rheology and Microstructure Development of Hydrating-Tricalcium-Silicate:
    Implications for Additive Manufacturing in Construction
  35. Lim Taeheun, Kim Seonghoon, Jo Kanghee, Jo Ilguk et al. (2021-07)
    Early Hydration and Mechanical Strength of Calcite-Ettringite-Seeds-Added Cement-Mixture for 3D Printing
  36. Mohan Manu, Rahul Attupurathu, Schutter Geert, Tittelboom Kim (2021-01)
    Early-Age Hydration, Rheology and Pumping Characteristics of CSA Cement-Based 3D Printable Concrete
  37. Panda Biranchi, Sonat Cem, Yang En-Hua, Tan Ming et al. (2020-12)
    Use of Magnesium-Silicate-Hydrate (M-S-H) Cement Mixes in 3D Printing Applications
  38. Yuan Qiang, Zhou Dajun, Huang Hai, Peng Jianwei et al. (2020-06)
    Structural Build-Up, Hydration and Strength Development of Cement-Based Materials with Accelerators
  39. Kim Seonghoon, Kim Taewook, Kim Buyoung, Kim Hong-dae et al. (2020-06)
    Early Hydration and Hardening of OPC-CSA Blends for Cementitious Structure of 3D Printing
  40. Dorn Tobias, Hirsch Tamino, Stephan Dietmar (2019-09)
    Study on the Influence of Accelerators on the Hydration of Portland Cement and Their Applicability in 3D Printing
  41. Das Arnesh, Reiter Lex, Wangler Timothy, Flatt Robert (2019-09)
    Hydration-Control of Ternary Cements for Digital Fabrication with Concrete
  42. 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
  43. Huang Hai, Huang Tingjie, Yuan Qiang, Zhou Dajun et al. (2019-01)
    Temperature-Dependence of Structural Build-Up and Its Relation with Hydration Kinetics of Cement-Paste
  44. Marchon Delphine, Kawashima Shiho, Bessaies-Bey Hela, Mantellato Sara et al. (2018-05)
    Hydration- and Rheology-Control of Concrete for Digital Fabrication:
    Potential Admixtures and Cement-Chemistry
  45. Vaitkevičius Vitoldas, Šerelis Evaldas, Kerševičius Vidas (2018-03)
    Effect of Ultra-Sonic Activation on Early Hydration Process in 3D Concrete Printing Technology