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Study on linear bio-structure print process based on alginate bio-ink in 3D bio-fabrication

Study on linear bio-structure print process based on alginate bio-ink in 3D bio-fabrication

作     者:Youping Gong Zhikai Bi Xiangjuan Bian Anlei Ge Jingyang He Wenxin Li Huifeng Shao Guojin Chen Xiang Zhang Youping Gong;Zhikai Bi;Xiangjuan Bian;Anlei Ge;Jingyang He;Wenxin Li;Huifeng Shao;Guojin Chen;Xiang Zhang

作者机构:School of Mechanical EngineeringHangzhou Dianzi UniversityHangzhou 310018China Faculty of Science and TechnologyZhejiang International Studies UniversityHangzhouChina National Center for International Joint Research of Micro-Nano Molding TechnologyZhengzhou UniversityZhengzhou 450001China 

基  金:The work is financially supported by the National Natural Science Foundation of China(51805475 51675148) 

出 版 物:《Bio-Design and Manufacturing》 (生物设计与制造(英文))

年 卷 期:2020年第3卷第2期

页      码:109-121页

摘      要:Ink-jet printing is a non-impact printing technology in which drops jetted from an orifice onto a designated *** technology can digitally transport fluids containing cells precisely onto desired substrates to construct three-dimensional *** order to obtain the stable uniform droplets,a stream is the key point of this ***,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 *** paper aims to obtain a good linear bio-structure with ink-jet printing ***,a typical droplet deposition process model is constructed;including droplet dynamics impact models and droplet diffusion cap ***,a model of successive droplet overlap,to form linear bio-structures,is ***,the finite element method is used to simulate the droplet impact,collision,and fusion ***,the main influencing factors of the continuous injection printing process,namely the time interval between consecutive droplets and the droplet contact angles,are *** 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 *** a proper printing speed and gel coating,a good survival rate of printed cells could be obtained.

主 题 词:Sodium alginate 3D Bio-fabrication Drop-on-demand inject Printing process simulation Linear bio-structure 

学科分类:0831[工学-公安技术类] 08[工学] 0802[工学-机械学] 0836[0836] 080201[080201] 

核心收录:

D O I:10.1007/s42242-020-00065-9

馆 藏 号:203884623...

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