CLC number:
On-line Access: 2024-08-27
Received: 2023-10-17
Revision Accepted: 2024-05-08
Crosschecked: 2020-03-10
Cited: 0
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Youping Gong, Zhikai Bi, Xiangjuan Bian, Anlei Ge, Jingyang He, Wenxin Li, Huifeng Shao, Guojin Chen & Xiang Zhang . Study on linear bio-structure print process based on alginate bio-ink in 3D bio-fabrication[J]. Journal of Zhejiang University Science D, 2020, 3(2): 109-121.
@article{title="Study on linear bio-structure print process based on alginate bio-ink in 3D bio-fabrication",
author="Youping Gong, Zhikai Bi, Xiangjuan Bian, Anlei Ge, Jingyang He, Wenxin Li, Huifeng Shao, Guojin Chen & Xiang Zhang ",
journal="Journal of Zhejiang University Science D",
volume="3",
number="2",
pages="109-121",
year="2020",
publisher="Zhejiang University Press & Springer",
doi="10.1007/s42242-020-00065-9"
}
%0 Journal Article
%T Study on linear bio-structure print process based on alginate bio-ink in 3D bio-fabrication
%A Youping Gong
%A Zhikai Bi
%A Xiangjuan Bian
%A Anlei Ge
%A Jingyang He
%A Wenxin Li
%A Huifeng Shao
%A Guojin Chen & Xiang Zhang
%J Journal of Zhejiang University SCIENCE D
%V 3
%N 2
%P 109-121
%@ 1869-1951
%D 2020
%I Zhejiang University Press & Springer
%DOI 10.1007/s42242-020-00065-9
TY - JOUR
T1 - Study on linear bio-structure print process based on alginate bio-ink in 3D bio-fabrication
A1 - Youping Gong
A1 - Zhikai Bi
A1 - Xiangjuan Bian
A1 - Anlei Ge
A1 - Jingyang He
A1 - Wenxin Li
A1 - Huifeng Shao
A1 - Guojin Chen & Xiang Zhang
J0 - Journal of Zhejiang University Science D
VL - 3
IS - 2
SP - 109
EP - 121
%@ 1869-1951
Y1 - 2020
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1007/s42242-020-00065-9
Abstract: Ink-jet printing is a non-impact printing technology in which drops jetted from an orifice onto a designated position. This technology can digitally transport fluids containing cells precisely onto desired substrates to construct three-dimensional organs. In order to obtain the stable uniform droplets, a stream is the key point of this technology. However, there are so many factors that affect the uniform droplet stream construction process: print parameters, material parameters, control method, etc. A good understanding of the various coupled transport processes that occur during bio-ink impact and spreading on bio-structure can improve the success of print-ability. This paper aims to obtain a good linear bio-structure with ink-jet printing technology. First, a typical droplet deposition process model is constructed; including droplet dynamics impact models and droplet diffusion cap models. Second, a model of successive droplet overlap, to form linear bio-structures, is constructed. Third, the finite element method is used to simulate the droplet impact, collision, and fusion process. Finally, the main influencing factors of the continuous injection printing process, namely the time interval between consecutive droplets and the droplet contact angles, are discussed. sodium alginate is selected as bio-ink to verify the theory, and it is found that a good linear bio-structure could be obtained if the printing parameters are controlled optimally, i.e., if the initial contact angle is set as 60 degrees and the trigger frequency is set as 150 kHz. With a proper printing speed and gel coating, a good survival rate of printed cells could be obtained.
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