Evaluating the Effects of Porosity on the Mechanical Properties of Extrusion-Based 3D Printed Concrete (2022-01)¶
10.1016/j.cemconres.2021.106695
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Journal Article - Cement and Concrete Research, Vol. 153
Abstract
Elements fabricated by extrusion-based 3D concrete printing (3DCP) display anisotropic mechanical properties when subject to loading conditions orientated in principle cartesian axis directions. Various studies show that the mechanical characteristics of 3DCP components are lower than their mould-cast counterparts, reportedly due to the existence of weaker, more porous, interfacial joints in-between filament layers. To promote the widespread adoption of 3DCP, the elastic response and strength parameters of 3DCP elements must be fully comprehended. Numerous attempts have been made to improve the mechanical properties of 3DCP using fibre reinforcement. At the root of all mechanical properties are the microstructural morphology and constituent characteristics of the mixture. It has been shown that the 3DCP process influences the ensuing microstructural morphology, and it is known that constituent type, constituent proportion, porosity content and void topology affect a porous medium's bulk strength and elasticity. Therefore, the correlation between such observations warrants additional investigation concerning the influence of porosity on the anisotropic mechanical properties of 3DCP components. In this research, the effects of porosity metrics such as total defect content; 3D void topology (shape, size, and orientation); pore spatial, size and compactness distributions; and interconnectivity are quantitively investigated for a fibre-reinforced printable concrete (FRPC) mixture via X-ray computed tomography and related to the elasticity, compressive strength and observed fracture patterns of mould-cast and concrete printed specimens consisting of the same fibre reinforced printable concrete matrix. The experimental findings indicate higher porosity, on average and at interlayer locations, in 3DCP samples as well as alterations in the spatial and topological attributes of voids in 3DCP samples. Furthermore, it is shown that both reductions in the elastic modulus and compressive capacity can be physically linked to the porosity metrics detected in 3DCP elements. Elasticity is dominated by porosity content and compressive capacity by the interrelation between porosity content, loading direction relative to the interlayer orientation, stress concentrations at void boundaries, and the increased deformability of the composite configuration. From the consideration and interpretation of these aspects, the anisotropic mechanical response of 3DCP samples is elucidated, and potential remedies are proposed.
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Influential Factors on Mechanical Properties and Microscopic Characteristics of Underwater 3D Printing Concrete - Zeng Jun-Jie, Li Pei-Lin, Yan Zitong, Zhou Jie-Kai et al. (2023-08)
Behavior of 3D Printed HPC Plates with FRP-Grid-Reinforcement Under Bending - Jaji Mustapha, Zijl Gideon, Babafemi Adewumi (2023-08)
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Experimental Characterisation of Hygrothermal Properties of a 3D Printed Cementitious Mortar - Villaquirán-Caicedo Mónica, Fernández-González Alejandro, Fernández-García Daniel, Gutiérrez Ruby (2023-07)
Valorization of a Low-Quality Coal-Ash, in the Preparation of Alkali-Activated Inks for Applications in 3D Additive Manufacturing - Wang Chaofan, Chen Bing, Vo Thanh, Rezania Mohammad (2023-07)
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3DLightBeam+:
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Sustainable Non-Conventional Concrete 3D Printing:
A Review - Liu Junli, Tran Jonathan, Ginigaddara Thusitha, Mendis Priyan (2023-06)
Exploration of Using Graphene Oxide for Strength Enhancement of 3D Printed Cementitious Mortar - Liu Junli, Tran Jonathan, Nguyen Vuong, Gunasekara Chamila et al. (2023-06)
3D Printing of Cementitious Mortar with Milled Recycled Carbon-Fibers:
Influences of Filament Offset on Mechanical Properties - Ding Tao, Xiao Jianzhuang, Mechtcherine Viktor (2023-05)
Microstructure and Mechanical Properties of Inter-Layer Regions in Extrusion-Based 3D Printed Concrete:
A Critical Review - Liu Chao, Zhang Yamei, Banthia Nemkumar (2023-05)
Unveiling Pore Formation and Its Influence on Micromechanical Property and Stress-Distribution of 3D Printed Foam-Concrete Modified with Hydroxypropyl-Methylcellulose and Silica-Fume - Mohan Manu, Rahul Attupurathu, Stappen Jeroen, Cnudde Veerle et al. (2023-05)
Assessment of Pore-Structure Characteristics and Tortuosity of 3D Printed Concrete Using Mercury-Intrusion-Porosimetry and X-Ray Tomography - 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 - Jaji Mustapha, Ibrahim Kamoru, Zijl Gideon, Babafemi Adewumi (2023-04)
Thixotropic Characterisation of Slag-Modified 3D Printable Metakaolin-Based Geopolymer Composite - Ramezani Amir, Modaresi Shahriar, Dashti Pooria, Givkashi Mohammad et al. (2023-04)
Effects of Different Types of Fibers on Fresh and Hardened Properties of Cement and Geopolymer-Based 3D Printed Mixtures:
A Review - Wu Yiwen, Liu Chao, Bai Guoliang, Liu Huawei et al. (2023-03)
3D Printed Concrete with Recycled Sand:
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3D Printed Concrete with Coarse Aggregates:
Built-In-Stirrup Permanent Concrete Formwork for Reinforced Columns - Wang Ziyue, Chen Zixuan, Xiao Jianzhuang, Ding Tao (2023-03)
Experimental Study on Interfacial Shear Behavior of 3D Printed Recycled Mortar - Kruger Jacques, Westhuizen Jean-Pierré (2023-03)
Investigating the Poisson Ratio of 3D Printed Concrete - Liu Haoran, Xiao Jianzhuang, Ding Tao (2023-03)
Flexural Performance of 3D Printed Composite Beams with ECC and Recycled Fine Aggregate Concrete:
Experimental and Numerical Analysis - Rehman Atta, Melesse Birru, Kim Jung-Hoon (2023-02)
Set-on-Demand 3D Concrete Printing Construction and Potential Outcome of Shotcrete-Accelerators on Its Hardened Properties - Liu Chao, Wang Zhihui, Wu Yiwen, Liu Huawei et al. (2023-02)
3D Printing Concrete with Recycled Sand:
The Influence Mechanism of Extruded Pore-Defects on Constitutive Relationship - Pasupathy Kirubajiny, Ramakrishnan Sayanthan, Sanjayan Jay (2023-01)
3D Concrete Printing of Eco-Friendly Geopolymer Containing Brick Waste - Surehali Sahil, Tripathi Avinaya, Nimbalkar Atharwa, Neithalath Narayanan (2023-01)
Anisotropic Chloride Transport in 3D Printed Concrete and Its Dependence on Layer-Height and Interface-Types - Spuriņa Ella, Šinka Māris, Ziemelis Krists, Bajāre Diāna (2023-01)
The Effects of 3D Printing on Frost-Resistance of Concrete - Kan Deyuan, Liu Guifeng, Cao Shuang, Chen Zhengfa et al. (2022-11)
Mechanical Properties and Pore-Structure of Multi-Walled Carbon-Nano-Tube-Reinforced Reactive Powder-Concrete for Three-Dimensional Printing Manufactured by Material-Extrusion - 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 - Qaidi Shaker, Yahia Ammar, Tayeh B., Unis H. et al. (2022-10)
3D Printed Geopolymer Composites:
A Review - Chen Yuning, Zhang Yamei, Xie Yudong, Zhang Zedi et al. (2022-09)
Unraveling Pore-Structure Alternations in 3D Printed Geopolymer Concrete and Corresponding Impacts on Macro-Properties - He Lewei, Li Hua, Chow Wai, Zeng Biqing et al. (2022-09)
Increasing the Inter-Layer Strength of 3D Printed Concrete with Tooth-Like Interface:
An Experimental and Theoretical Investigation - Tao Yaxin, Mohan Manu, Rahul Attupurathu, Yuan Yong et al. (2022-08)
Stiffening Controllable Concrete Modified with Redispersible Polymer Powder for Twin-Pipe Printing - Liu Junli, Setunge Sujeeva, Tran Jonathan (2022-07)
3D Concrete Printing with Cement-Coated Recycled Crumb Rubber:
Compressive and Microstructural Properties - Bong Shin, Nematollahi Behzad, Nerella Venkatesh, Mechtcherine Viktor (2022-06)
Properties of 3D Printable Ductile Fiber-Reinforced Geopolymer Composite - Cho Seung, Heever Marchant, Kruger Jacques, Zijl Gideon (2022-06)
Proof of Concept:
Sprayable SHCC Overlay Reinforcement Regime for Unreinforced 3D Printed Concrete Structure - Zhang Hanghua, Xiao Jianzhuang, Duan Zhenhua, Zou Shuai et al. (2022-06)
Effects of Printing Paths and Recycled Fines on Drying Shrinkage of 3D Printed Mortar - Liu Huawei, Liu Chao, Bai Guoliang, Wu Yiwen et al. (2022-04)
Influence of Pore-Defects on the Hardened Properties of 3D Printed Concrete with Coarse Aggregate - Mechtcherine Viktor, Tittelboom Kim, Kazemian Ali, Kreiger Eric et al. (2022-04)
A Roadmap for Quality-Control of Hardening and Hardened Printed Concrete - Chen Mingxu, Li Haisheng, Yang Lei, Wang Shoude et al. (2022-03)
Rheology and Shape-Stability-Control of 3D Printed Calcium-Sulphoaluminate-Cement Composites Containing Paper-Milling-Sludge - Heever Marchant, Plessis Anton, Bester Frederick, Kruger Jacques et al. (2022-02)
A Mechanistic Evaluation Relating Microstructural Morphology to a Modified Mohr-Griffith Compression-Shear Constitutive-Model for 3D Printed Concrete
BibTeX
@article{heev_ples_krug_zijl.2022.EtEoPotMPoEB3PC,
author = "Marchant van den Heever and Anton du Plessis and Jacques Pienaar Kruger and Gideon Pieter Adriaan Greeff van Zijl",
title = "Evaluating the Effects of Porosity on the Mechanical Properties of Extrusion-Based 3D Printed Concrete",
doi = "10.1016/j.cemconres.2021.106695",
year = "2022",
journal = "Cement and Concrete Research",
volume = "153",
}
Formatted Citation
M. van den Heever, A. du Plessis, J. P. Kruger and G. P. A. G. van Zijl, “Evaluating the Effects of Porosity on the Mechanical Properties of Extrusion-Based 3D Printed Concrete”, Cement and Concrete Research, vol. 153, 2022, doi: 10.1016/j.cemconres.2021.106695.
Heever, Marchant van den, Anton du Plessis, Jacques Pienaar Kruger, and Gideon Pieter Adriaan Greeff van Zijl. “Evaluating the Effects of Porosity on the Mechanical Properties of Extrusion-Based 3D Printed Concrete”. Cement and Concrete Research 153 (2022). https://doi.org/10.1016/j.cemconres.2021.106695.