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#slag

Keywords by Co - Occurrence

  1. Akgümüş Fatih, Şahin Hatice, İsafça Kaya Tuğçe, Mardani Ali (2025-12)
    Combined Effect of Recycled Tire Steel Fiber and Blast Furnace Slag on the Mechanical Performance of 3D Printable Concrete
  2. Lu Qi, Hua Sudong, Yue Hongfei (2025-11)
    Effect of Spherical Electric Arc Slag on Solid Waste-Based 3D-Printed Concrete
  3. Sun Yuhang, Li Chuang, Liu Xiongfei, Wang Li et al. (2025-11)
    Enhancing Sulfate Resistance of Spray-Based 3D Printed Recycled Tunnel Slag Concrete Through Polypropylene Fiber Optimization
  4. Zhong Kuangnan, Huang Kaiyun, Liu Zhichao, Wang Fazhou et al. (2025-10)
    Dual Strategies for Enhancing Carbonation Curing in 3D Printing Steel Slag Mortars:
    Material Modification and Curing Process Innovation
  5. Si Wen, Hopkins Ben, Khan Mehran, McNally Ciaran (2025-09)
    Towards Sustainable Mortar:
    Optimising Sika-Fiber Dosage in Ground Granulated Blast Furnace Slag and Silica Fume Blends for 3D Concrete Printing
  6. Anwar Muhammad, Zhu Xingyi, Zhang Yating, Wang Jiakang et al. (2025-09)
    Synergistic Effects of Microwave Curing Regimes on Early, Mid, and Long-Term Strengths and Microstructural Performance of Fly Ash-Slag Based 3D-Printed Geopolymers
  7. Rahman S., Khair Sanjida, Shaikh Faiz, Sarker Prabir (2025-09)
    Decarbonized 3D Printed Concrete Incorporating Lithium Slag and PVA Fiber:
    Buildability, Mechanical, and Microstructural Insights
  8. Jankovský Ondřej, Lodňánek Petr, Lauermannová Anna-Marie, Jiříčková Adéla et al. (2025-08)
    Use of Ladle Furnace Slag as Filler Replacement in Magnesium Oxychloride Cement:
    Towards Sustainable 3D-Printable Building Composites
  9. Wang Suguo, Wang Xing, Yan Xueyuan, Chen Shanghong (2025-08)
    Effects of Aggregate Size and Nozzle Diameter on Printability and Mechanical Properties of 3D Printed Ferronickel Slag-GGBFS Concrete
  10. Ravichandran Darssni, Prem Prabhat, Bhaskara Gollapalli, Maheswaran Srinivasan et al. (2025-07)
    Time-Dependent Properties of 3D Printable Plain and Fibered High Strength Concrete Incorporating Copper Slag as an Alternate Fine Aggregate
  11. 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
  12. Dong Wei, Zhang Changmin, Wang Junfeng, Zhang Xinjie et al. (2025-07)
    Optimal Design of Mix Proportions for 3D Printed Concrete with Ferrochrome Slag and Aeolian Sand
  13. Nieświec Martyna, Chajec Adrian, Šavija Branko (2025-05)
    Effect of Ground Copper Slag on the Fresh Properties of 3d Printed Cementitious Composites
  14. Kuang Hao, Deng Yang, Wang Dong, Jian Shouwei et al. (2025-05)
    Strengthening Effect of In-Situ Sprayed UV-Curable Polyurethane-Acrylate Resin Coating on Slag-Based 3D Printing Concrete
  15. Kaya Ebru, Ciza Baraka, Yalçınkaya Çağlar, Felekoğlu Burak et al. (2025-05)
    A Comparative Study on the Effectiveness of Fly Ash and Blast Furnace Slag as Partial Cement Substitution in 3D Printable Concrete
  16. Ali Shah Syed, Zhang Shipeng, Xuan Dongxing, Poon Chi (2025-04)
    Development of a Novel Mixing Strategy for Set-on-Demand Printing of One-Part Geopolymer Using Municipal Solid Waste Incineration Bottom Ash and Blast Furnace Slag
  17. Ravichandran Darssni, Prem Prabhat, Giridhar Greeshma, Bhaskara Gollapalli et al. (2025-04)
    Time-Dependent Properties of 3D-Printed UHPC with Silica Sand, Copper Slag, and Fibers
  18. Tseng Kuo-Chang, Chi Maochieh, Yeih Weichung, Huang Ran (2025-04)
    Influence of Slag/Fly Ash as Partial Cement Replacement on Printability and Mechanical Properties of 3D-Printed Concrete
  19. Aktürk Büşra, Ertuğrul Onur, Özen Ömer, Oktay Didem et al. (2025-03)
    Influence of Nano-Silica and R-MgO on Rheological Properties, 3D Printability, and Mechanical Properties of One-Part Sodium Carbonate-Activated Slag-Based Mixes
  20. Liu Xiongfei, Li Chuang, Guo Pei, Wang Li et al. (2025-02)
    Spray-Based 3D Printed Tunnel Slag Concrete:
    Evaluation for Printability and Mechanical Performance
  21. Ambily Parukutty, Kaliyavaradhan Senthil, Sebastian Shilpa, Shekar Deepadharshan (2025-01)
    Sustainable 3D Printable Concrete-Mix Using Copper-Slag
  22. Omur Tarik, Akpunar Ahmet, Bingöl Ayşe, Oktay Büşra et al. (2025-01)
    The Influence of Phase-Change-Material Filled Three-Dimensional Printed Artificial Aggregates on the Properties of Blast-Furnace-Slag Based Alkali-Activated Concrete
  23. Wu Mushuang, Wang Zixiao, Chen Yuxuan, Zhu Mengyu et al. (2024-11)
    Effect of Steel-Slag on Rheological and Mechanical Properties of Sulfoaluminate-Cement-Based Sustainable 3D Printing Concrete
  24. Kozub Barbara, Sitarz Mateusz, Gądek Szymon, Ziejewska Celina et al. (2024-11)
    Upscaling of Copper Slag-Based Geopolymer to 3D Printing Technology
  25. Hassan Zohaib, Raza Saim, Shafei Behrouz, Mahoutian Mehrdad et al. (2024-11)
    Innovations to Improve 3D Concrete Printing of Portland Cement-Steel-Slag Blended Mortars
  26. Zhao Wanting, Zhao Yu, Zhu Lingli, Guan Xuemao (2024-10)
    Preparation of 3D Printed Concrete from Solid Waste:
    Study of the Relationship Between Steel-Slag Characteristics and Early Performance in 3D Printing
  27. 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
  28. Tran Nhi, Tran Mien, Tran Jonathan, Nguyen Anh et al. (2024-09)
    Eco-Friendly 3D Printed Concrete Using Steel-Slag-Aggregate:
    Buildability, Printability and Mechanical Properties
  29. Ertuğrul Onur, Özen Ömer, Oktay Didem, Yazar Tuğrul et al. (2024-09)
    Improvement of Rheological Properties and Printability of Sodium-Carbonate Activated Slag-Based Systems
  30. Hassan Zohaib, Bernal Susan, Raza Saim, Kammer David et al. (2024-09)
    Feasibility-Assessment of 3D Printability of Portland-Cement-Steel-Slag Blended Mortar
  31. Dai Xiaodi, Tao Yaxin, Zhang Yi, Ding Luchuan et al. (2024-08)
    Development of 3D Printable Alkali-Activated Slag-Metakaolin Concrete
  32. Zhong Kuangnan, Huang Kaiyun, Liu Zhichao, Wang Fazhou et al. (2024-07)
    CO2-Driven Additive Manufacturing of Sustainable Steel-Slag-Mortars
  33. Zhou Zhijie, Geng Jian, Jin Chen, Liu Genjin et al. (2024-06)
    Influence of Residue Soil on the Properties of Fly-Ash-Slag-Based Geopolymer Materials for 3D Printing
  34. Zhong Kuangnan, Huang Shuai, Liu Zhichao, Wang Fazhou et al. (2024-06)
    CO2-Absorbing 3D Printable Mixtures for Magnesium-Slag Valorization
  35. Tran Mien, Ly Duy-Khuong, Nguyen Tan, Tran Nhi (2024-05)
    Robust Prediction of Workability Properties for 3D Printing with Steel-Slag-Aggregate Using Bayesian Regularization and Evolution Algorithm
  36. Zhu Lingli, Zhao Wanting, Zhao Yu, Guan Xuemao (2024-03)
    Mechanism Analysis of Rheological Properties of 3D Printed Steel-Slag Cementitious Composite Based on Low-Field Nuclear-Magnetic-Relaxation-Test
  37. Chen Zhengyuan, Yang Shutong, Liu Qi, Xu Mingqi et al. (2024-03)
    Closed-Form Fracture-Model for Evaluating Crack-Resistance of 3D Printed Fiber-Reinforced Alkali-Activated Slag/Fly-Ash Recycled-Sand Concrete
  38. Dong Wei, Wang Junfeng, Hang Meiyan, Qu Shuqiang (2024-01)
    Research on Printing Parameters and Salt-Frost-Resistance of 3D Printing Concrete with Ferrochrome-Slag and Aeolian Sand
  39. Jaji Mustapha, Zijl Gideon, Babafemi Adewumi (2023-11)
    Slag-Modified Metakaolin-Based 3D Printed Geopolymer:
    Mechanical Characterisation, Microstructural Properties, and Nitrogen Physisorption Pore-Analysis
  40. Beersaerts Glenn, Soete Jeroen, Giels Michiel, Eykens Lies et al. (2023-09)
    3D Printing of an Iron-Rich Slag-Based Hybrid Mortar:
    A Durable, Sustainable and Cost-Competitive Product?
  41. Saadati Farzaneh, Kani Ebrahim (2023-09)
    Phosphorous Slag-Based Geopolymer Cement Incorporate with Mullite for 3D Printing Application
  42. 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
  43. Yin Yunchao, Huang Jian, Wang Tiezhu, Yang Rong et al. (2023-09)
    Effect of Hydroxypropyl-Methylcellulose on Rheology and Printability of the First Printed Layer of Cement Activated Slag-Based 3D Printing Concrete
  44. Hu Hailong, Huang Jian, Wang Tiezhu, Manuka Mesfin et al. (2023-09)
    Impact of Calcium Sulfoaluminate Cement on Printability and Early Strength Development of a Slag-Based 3D Printing Cementitious Material
  45. Jaji Mustapha, Zijl Gideon, Babafemi Adewumi (2023-08)
    Slag-Modified Fiber-Reinforced Metakaolin-Based Geopolymer for 3D Concrete Printing Application:
    Evaluating Fresh and Hardened Properties
  46. Tao Yaxin, Dai Xiaodi, Schutter Geert, Tittelboom Kim (2023-06)
    Set-on-Demand of Alkali-Activated Slag Mixture Using Twin-Pipe Pumping
  47. Butkutė Karolina, Vaitkevičius Vitoldas, Šinka Māris, Augonis Algirdas et al. (2023-05)
    Influence of Carbonated-Bottom-Slag-Granules in 3D Concrete Printing
  48. Yu Qian, Zhu Binrong, Li Xuesen, Meng Lingqi et al. (2023-04)
    Investigation of the Rheological and Mechanical Properties of 3D Printed Eco-Friendly Concrete with Steel-Slag
  49. Jaji Mustapha, Ibrahim Kamoru, Zijl Gideon, Babafemi Adewumi (2023-04)
    Thixotropic Characterisation of Slag-Modified 3D Printable Metakaolin-Based Geopolymer Composite
  50. Dai Xiaodi, Tao Yaxin, Tittelboom Kim, Schutter Geert (2023-02)
    Rheological and Mechanical Properties of 3D Printable Alkali-Activated Slag Mixtures with Addition of Nano Clay
  51. 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
  52. Malipeddi Reshma, Adiseshu S. (2023-01)
    Impact of Unique Mixing Methodology on Macro and Microstructural Characteristics of Concrete Containing Slag and Fly-Ash
  53. Jaji Mustapha, Zijl Gideon, Babafemi Adewumi (2022-09)
    Fresh Properties and Strength Evolution of Slag-Modified Fiber-Reinforced Metakaolin-Based Geopolymer Composite for 3D Concrete Printing Application
  54. Kamakshi Tippabhotla, Subramaniam Kolluru (2022-06)
    Developing Printable Fly-Ash-Slag Geopolymer Binders with Rheology Modification
  55. Dvorkin Leonid, Marchuk Vitaliy, Hager Izabela, Maroszek Marcin (2022-06)
    Design of Cement-Slag Concrete Composition for 3D Printing
  56. Ma Guowei, Yan Yufei, Zhang Mo, Sanjayan Jay (2022-05)
    Effect of Steel-Slag on 3D Concrete Printing of Geopolymer with Quaternary Binders
  57. Yuan Qiang, Gao Chao, Huang Tingjie, Zuo Shenghao et al. (2022-03)
    Factors Influencing the Properties of Extrusion-Based 3D Printed Alkali-Activated Fly-Ash-Slag Mortar
  58. Yue Hongfei, Hua Sudong, Qian Hao, Yao Xiao et al. (2021-12)
    Investigation on Applicability of Spherical Electric Arc-Furnace-Slag as Fine Aggregate in Superplasticizer-Free 3D Printed Concrete
  59. Kocherla Amarteja, Kamakshi Tippabhotla, Subramaniam Kolluru (2021-11)
    In-Situ Embedded PZT Sensor for Monitoring 3D Concrete Printing:
    Application in Alkali-Activated Fly-Ash-Slag Geopolymers
  60. Salleh Norhafizah, Jamalulail Nur, Abdul Hamid Noor, Jamellodin Zalipah et al. (2021-11)
    New Technology in 3D Concrete Printing by Using Ground-Granulated Blast-Furnace-Slag:
    A Review
  61. Lv Xuesen, Qin Yao, Liang Hang, Cui Xuemin (2021-07)
    Effects of Modifying-Agent on Rheology and Workability of Alkali-Activated Slag-Paste for 3D Extrusion-Forming
  62. Dai Shuo, Zhu Huajun, Zhai Munan, Wu Qisheng et al. (2021-06)
    Stability of Steel-Slag as Fine Aggregate and Its Application in 3D Printing Materials
  63. Kondepudi Kala, Subramaniam Kolluru (2021-02)
    Formulation of Alkali-Activated Fly-Ash-Slag Binders for 3D Concrete Printing
  64. Beersaerts Glenn, Lucas Sandra, Pontikes Yiannis (2020-07)
    An Fe-Rich Slag-Based Mortar for 3D Printing
  65. Lu Bing, Zhu Weiping, Weng Yiwei, Liu Zhixin et al. (2020-02)
    Study of MgO-Activated-Slag as a Cementless Material for Sustainable Spray-Based 3D Printing
  66. Panda Biranchi, Ruan Shaoqin, Unluer Cise, Tan Ming (2020-01)
    Investigation of the Properties of Alkali-Activated Slag Mixes Involving the Use of Nano-Clay and Nucleation-Seeds for 3D Printing
  67. Panda Biranchi, Mohamed Nisar, Tay Yi, He Lewei et al. (2018-05)
    Effects Of Slag Addition On Bond Strength Of 3D Printed Geopolymer Mortar:
    An Experimental Investigation