4.7 Article

Development of 3D printed heavyweight concrete (3DPHWC) containing magnetite aggregate

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MATERIALS & DESIGN
卷 233, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2023.112246

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Additive manufacturing; 3D printing; Heavyweight concrete; Radiation shielding; Gamma-ray; Magnetite

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The main objective of this study is to develop 3D printed heavyweight concrete using magnetite aggregate to enhance its properties. The results show that the inclusion of magnetite aggregate increases the strength of the concrete and improves its porosity. Additionally, the introduction of magnetite aggregate improves the shielding performance of the material against slow neutrons.
The main objective of this study is to develop 3D printed heavyweight concrete (3DPHWC) to produce elements with a dry density of up to 3500 kg/m(3) by replacing natural aggregate (SA) with magnetite aggregate (MA) up to 100%. A comprehensive systematic study was conducted to thoroughly assess mixtures' mechanical properties, physical proficiency, fresh properties, and printing qualities. The inclusion of MA exhibited the desired fresh properties required for 3D printing and promising physical and mechanical properties. Evaluation of the mechanical properties of designed 3DPHWC indicates that replacing SA with MA increases both cast and printed samples' strengths. The 3D printed M100 sample achieved higher 28 days flexural and compressive strengths by 18 % and 20 %, respectively, compared to printed control mix (M0). Micro-CT study correspondingly demonstrated improvements in the composites' porosity, pore size, and pore morphologies. The linear attenuation coefficients (LACs) and half-value layer (HVLs) for slow neutron and gamma-ray were measured to assess radiation shielding characteristics. A significant performance improvement was obtained for slow neutrons by introducing the magnetite aggregate. Unlike slow neutrons, no significant difference was observed between cast and printed samples against gamma-rays. Moreover, the effect of porosity on the shielding performance was discussed.

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