3D printable lightweight cementitious composites with incorporated waste glass aggregates and expanded microspheres - Rheological, thermal and mechanical properties

被引:70
作者
Cuevas, Karla [1 ]
Chougan, Mehdi [2 ]
Martin, Falk [1 ]
Ghaffar, Seyed Hamidreza [2 ]
Stephan, Dietmar [1 ]
Sikora, Pawel [1 ]
机构
[1] Tech Univ, Bldg Mat & Construct Chem, Berlin, Germany
[2] Brunel Univ, Dept Civil & Environm Engn, Uxbridge UB8 3PH, Middx, England
基金
欧盟地平线“2020”;
关键词
3D printing; Additive manufacturing; Lightweight concrete; Waste glass; Thermal conductivity; RECYCLED GLASS; CONCRETE; PERFORMANCE; REPLACEMENT;
D O I
10.1016/j.jobe.2021.102718
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
One of the fields in the construction industry where 3D printing of cementitious composites can play a significant role is associated with manufacturing of lightweight structures. Thanks to 3D printing, structural self- weight can be reduced by topology optimization of printed elements. Moreover, further decrements of self- weight and im- provement of thermal insulating properties can be achieved by the mixture design and introduction of materials of low thermal conductivity. To date, limited knowledge on lightweight printable mixtures is available. The main objective of this study is to develop 3D printed lightweight concrete (3DPLWC) mixture, with the intention of re- placing natural aggregate with waste glass (WG) by 50 vol.-% and 10 0 vol.- %. Moreover, expanded thermoplas- tic microspheres (ETM) were incorporated into the mixture. This led to a reduction in density of the mixtures as well as the thermal conductivity by up to 40 %. Comprehensive evaluation of material's fresh properties revealed that the addition of ETM results in 3D printable material with lower yield shear stress and higher plastic viscosity by 28 % and 66 %, respectively, compared to the mixes without ETM. Moreover, improvement of shape retention, flowability, setting times, and early- hardened mixtures' properties was observed. The mechanical properties of 3DPLWC showed that the replacement of natural aggregate by 50 vol.-% WG led to enhanced flexural and com- pressive strength of the composite, while full replacement resulted in retaining or slight reduction of the mechan- ical properties.
引用
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页数:12
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