#packing
Keywords by Co - Occurrence
- Silva Guido, Tudela Marcell, Rojas Omar, Llontop Camila et al. (2026-03)
Printable Concrete with Multi-Source Recycled Aggregates:
Particle Packing Design, Rheological Behavior, and 3D Printing Validation
- Paul Aranya, Manosalvas Holst Carlos, Berryman Charles, Friedland Carol et al. (2026-01)
Development of Sustainable Low-Cement Construction 3D Printing Materials via Dense Particle Packing
- Lyu Ping, Zhou Bo, Wu Zhengyu, Sinha Arkabrata et al. (2026-01)
Performance of 3D-Printed UHPC Optimized by Particle Packing Model Under Standard and Steam Curing
- Paritala Spandana, Singh Prashant, Kamakshi Tippabhotla, Subramaniam Kolluru (2024-09)
Assessment of Printability of Concrete Based on Packing of Aggregates
- Bono Victor, Ducoulombier Nicolas, Mesnil Romain, Caron Jean-François (2023-12)
Methodology for Formulating Low-Carbon Printable Mortar Through Particles-Packing-Optimization
- Kondepudi Kala, Subramaniam Kolluru, Nematollahi Behzad, Bong Shin et al. (2022-11)
Study of Particle-Packing and Paste-Rheology in Alkali-Activated Mixtures to Meet the Rheology Demands of 3D Concrete Printing:
Correction
- Deng Zhicong, Jia Zijian, Zhang Chao, Wang Zhibin et al. (2022-10)
3D Printing Lightweight Aggregate Concrete Prepared with Shell-Packing-Aggregate Method:
Printability, Mechanical Properties and Pore-Structure
- 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
- Kondepudi Kala, Subramaniam Kolluru, Nematollahi Behzad, Bong Shin et al. (2022-05)
Study of Particle-Packing and Paste-Rheology in Alkali-Activated Mixtures to Meet the Rheology Demands of 3D Concrete Printing
- Long Wujian, Lin Can, Tao Jie-Lin, Ye Taohua et al. (2021-02)
Printability and Particle-Packing of 3D Printable Limestone-Calcined-Clay-Cement Composites
- Pierre Alexandre, Weger Daniel, Perrot Arnaud, Lowke Dirk (2018-01)
Penetration of Cement-Pastes into Sand-Packings During 3D Printing:
Analytical and Experimental Study