Design-for-manufacture of 3D concrete printed structural composites (DfM:3DCP)
Lead Research Organisation:
University of Sheffield
Department Name: Civil and Structural Engineering
Abstract
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Organisations
Publications
Alanazi N
(2020)
Estimating static/dynamic strength of notched unreinforced concrete under mixed-mode I/II loading
in Engineering Fracture Mechanics
Alanazi N
(2020)
The Theory of Critical Distances to Predict Static and Dynamic Strength of Notched Plain Concrete under Mixed-Mode I/II Loading
in Procedia Structural Integrity
Alanazi N
(2022)
Theory of Critical Distances and static/dynamic fracture behaviour of un-reinforced concrete: length scale parameters vs. material meso-structural features
in Engineering Fracture Mechanics
Alanazi N
(2022)
The Theory of Critical Distances to assess the effect of cracks/manufacturing defects on the static strength of 3D-printed concrete
in Engineering Fracture Mechanics
Alanazi N
(2022)
The Theory of Critical Distances to perform the static assessment of 3D-printed concrete weakened by manufacturing defects and cracks
in Procedia Structural Integrity
Provis J
(2023)
The Decarbonization of Construction-How Can Alkali-Activated Materials Contribute?
in Engineering
Description | As far as structural strength of 3D-printed concrete is concerned, manufacturing defects having size lower than about 1/2 mm can be neglected, with this resulting just in a little loss of accuracy. |
Exploitation Route | This finding can positively influenced the way the technologies to 3D-print concrete can further developed. |
Sectors | Construction,Manufacturing, including Industrial Biotechology |
Description | As far as structural integrity is concerned, our findings can be used by engineers to assess the detrimental effect of manufacturing defects in 3D-printed components of concrete. |
First Year Of Impact | 2022 |
Sector | Construction,Manufacturing, including Industrial Biotechology |
Impact Types | Societal |
Title | Bespoke experimental set-up |
Description | We have developed a specific experimental set-up suitable for testing plain and notched concrete under symmetrical and anti-symmetrical bending. Tests can be run at different loading rates and the local displacements in the critical region can directly be measured using a high-speed Digital Image Correlation (DIC) camera. |
Type Of Material | Improvements to research infrastructure |
Year Produced | 2019 |
Provided To Others? | No |
Impact | This testing set-up will allow us to assess experimentally the strength of plain and notched concrete under static/dynamic Mode I-Mixed Mode I/II loading. |