Extrusion-based additive manufacturing with cement-based materials – Production steps, processes, and their underlying physics: A review
2020/03/19 by Viktor Mechtcherine, V. Mechtcherine, F.P. Bos +14 · 31 citations
Engineering · #Innovations in Concrete and Construction Materials #Additive Manufacturing and 3D Printing Technologies #BIM and Construction Integration
paper · doi:10.1016/j.cemconres.2020.106037
Abstract
This article offers a comprehensive overview of the underlying physics relevant to an understanding of materials processing during the various production steps in extrusion-based 3D concrete printing (3DCP). Understanding the physics governing the processes is an important step towards the purposeful design and optimization of 3DCP systems as well as their efficient and robust process control. For some processes, analytical formulas based on the relevant physics have already enabled reasonable predictions with respect to material flow behavior and buildability, especially in the case of relatively simple geometries. The existing research in the field was systematically compiled by the authors in the framework of the activities of the RILEM Technical Committee 276 “Digital fabrication with cement-based materials”. However, further research is needed to develop reliable tools for the quantitative analysis of the entire process chain. To achieve this, experimental efforts for the characterization of material properties need to go hand in hand with comprehensive numerical simulation.
Citations
Cited by
- Filament geometry control in extrusion-based additive manufacturing of concrete: The good, the bad and the ugly
- Peridynamic anisotropic behavior analysis of 3D-printed concrete structures
- Chameleon-Inspired Temperature-Adaptive Cooling/Heating structural cementitious composite
- Physics-Informed Dynamical Modeling of Extrusion-Based 3D Printing Processes
- Fluid Mechanics Challenges in Direct-Ink-Writing Additive Manufacturing
- Gel polymer electrolytes: definitions, classification, rheology, and interfacial properties
- Nailing of Layers: A Promising Way to Reinforce Concrete 3D Printing Structures. [europepmc]
- Effect of Structural Build-Up on Interlayer Bond Strength of 3D Printed Cement Mortars. [europepmc]
- Mechanical Properties of Hardened 3D Printed Concretes and Mortars-Development of a Consistent Experimental Characterization Strategy. [europepmc]
- An Overview on the Rheology, Mechanical Properties, Durability, 3D Printing, and Microstructural Performance of Nanomaterials in Cementitious Composites. [europepmc]
- 3D Concrete Printing: A Systematic Review of Rheology, Mix Designs, Mechanical, Microstructural, and Durability Characteristics. [europepmc]
- Large Particle 3D Concrete Printing-A Green and Viable Solution. [europepmc]
- Preliminary Study of the Fresh and Hard Properties of UHPC That Is Used to Produce 3D Printed Mortar. [europepmc]
- Effect of TiO 2 Nanoparticles on the Fresh Performance of 3D-Printed Cementitious Materials. [europepmc]
- Additive Manufacturing in Off-Site Construction: Review and Future Directions. [europepmc]
- Properties of 3D Printed Concrete-Geopolymer Hybrids Reinforced with Aramid Roving. [europepmc]
- Comparison of the Conventional and Mechanochemical Syntheses of Cyclodextrin Derivatives. [europepmc]
- Optimisation of Mix Proportion of 3D Printable Mortar Based on Rheological Properties and Material Strength Using Factorial Design of Experiment. [europepmc]
- Using micro-XRF to characterize chloride ingress through cold joints in 3D printed concrete. [europepmc]
- A Review of the Extruder System Design for Large-Scale Extrusion-Based 3D Concrete Printing. [europepmc]
- Feasibility Review of Aerated Materials Application in 3D Concrete Printing. [europepmc]
- Geometric Conformability of 3D Concrete Printing Mixtures from a Rheological Perspective. [europepmc]
- Additive Manufacturing of Earth-Based Materials: A Literature Review on Mortar Composition, Extrusion, and Processing Earth. [europepmc]
- Analysis of the Rheological Properties of Natural Hydraulic Lime-Based Suspensions for Sustainable Construction and Heritage Conservation. [europepmc]
- Alkali activated materials applied in 3D printing construction: A review. [europepmc]
- Study on the Characteristics of Circumferential and Longitudinal Flow of Vault Concrete during Tunnel Lining Pouring Processes. [europepmc]
- Advancing Structural Reinforcement in 3D-Printed Concrete: Current Methods, Challenges, and Innovations. [europepmc]
- Review of Material Processing Technology for 3D Concrete Printing. [europepmc]
- Feasibility, Mechanical Properties, and Environmental Impact of 3D-Printed Mortar Incorporating Recycled Fine Aggregates from Decoration and Renovation Waste. [europepmc]
- Rheology and Shape Stability Control of 3D-Printed White Calcium Sulfoaluminate Cement Composites Containing Oyster Shell and Cuttlebone Powder. [europepmc]
- Influence of Residue Soil on the Properties of Fly Ash–Slag-Based Geopolymer Materials for 3D Printing [europepmc]
Related