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Three-dimensional printing of natural materials involving loess-based composite materials designed for ecofriendly applications

Authors
Lee, HyunbaeKim, JaehwanBae, S.-M.Oh, JiwonHwang, HeesuHwang, Jinha
Issue Date
Jan-2021
Publisher
MDPI AG
Keywords
3D printing; Loess-based materials; Mechanical strength; Rapid setting/hardening
Citation
Materials, v.14, no.2, pp.1 - 12
Journal Title
Materials
Volume
14
Number
2
Start Page
1
End Page
12
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/16110
DOI
10.3390/ma14020293
ISSN
1996-1944
Abstract
In this work, loess-based materials were designed based on a multicomponent composite materials system for ecofriendly natural three-dimensional (3D) printing involving quick lime, gypsum, and water. The 3D printing process was monitored as a function of gypsum content; in terms of mechanical strength and electrical resistance, in the cube-shaped bulk form. After initial optimization, the 3D printing composition was refined to provide improved printability in a 3D printing system. The optimal 3D fabrication allowed for reproducible printing of rectangular columns and cubes. The development of 3D printing materials was scrutinized using a multitude of physicochemical probing tools, including X-ray diffraction for phase identification, impedance spectroscopy to monitor setting behaviors, and mercury intrusion porosimetry to extract the pore structure of loess-based composite materials. Additionally, the setting behavior in the loess-based composite materials was analyzed by investigating the formation of gypsum hydrates induced by chemical reaction between quick lime and water. This setting reaction provides reasonable mechanical strength that is sufficient to print loess-based pastes via 3D printing. Such mechanical strength allows utilization of robotic 3D printing applications that can be used to fabricate ecofriendly structures. ? 2021 by the authors. Licensee MDPI, Basel, Switzerland.
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