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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Analysis of the operating conditions of pulse electric field-assisted EHD for sodium alginate printing using design of experiment approach
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Analysis of the operating conditions of pulse electric field-assisted EHD for sodium alginate printing using design of experiment approach

机译:试验方法设计脉冲电场辅助EHD脉冲电场辅助EHD的运行条件分析

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摘要

Electrohydrodynamic (EHD) printing is a novel printing technology with high printing resolution, making it suitable for applications such as tissue engineering and micro/nanomanufacturing. Inkjets from EHD fall on the substrate either in the continuous or drop-on-demand (D-O-D) mode. In this research, the D-O-D-based EHD printing process was used to print micro droplets of bioink assisted by a pulse electric field. A 2% (g/mL) sodium alginate solution was used as the bioink. A general full factorial design was used to analyze and observe the relation between the bioink droplet quality and the EHD process parameters. The diameter of the droplet, droplet generation rate, distance between two droplets, and the droplet consistency are the four major responses to evaluate the printing quality. The EHD process parameters, offset voltage, pulse width, and frequency, are the three regressor variables. After conducting the data analysis, it is observed that the higher frequency and the lower voltage produced the smaller droplet diameter, higher droplet generation rate, and nearer distance among the droplets. However, this increased the variance in the droplet patterns thus reducing the consistency of the printing process. It was also found that pulse width had marginal significance on the quality of printed drops. From the data analysis, four regression models were developed to aid in finding the parameter combinations to print 2% sodium alginate at a desired droplet diameter, droplet generation rate, and droplet distance. This proposed model can be used as a guideline for EHD bioprinting experimental setup, and it will significantly reduce the efforts to determine the optimal process parameters.
机译:电流体动力(EHD)打印是一种新型的打印技术,具有较高的打印分辨率,适用于组织工程和微/纳米制造等应用。EHD的喷墨以连续或按需滴墨(D-O-D)模式落在基板上。在本研究中,基于D-O-D的EHD打印工艺被用于在脉冲电场的辅助下打印生物墨水的微滴。使用2%(g/mL)海藻酸钠溶液作为生物墨水。采用通用全因子设计,分析和观察了生物墨水液滴质量与EHD工艺参数之间的关系。液滴直径、液滴生成率、两液滴之间的距离和液滴浓度是评价印刷质量的四个主要指标。EHD工艺参数、偏置电压、脉冲宽度和频率是三个回归变量。在进行数据分析后,观察到较高的频率和较低的电压会产生较小的液滴直径、较高的液滴生成率以及液滴之间更近的距离。然而,这增加了液滴图案的差异,从而降低了印刷过程的一致性。研究还发现,脉冲宽度对打印液滴的质量影响不大。从数据分析中,开发了四个回归模型,以帮助找到以所需液滴直径、液滴生成率和液滴距离打印2%海藻酸钠的参数组合。该模型可作为EHD生物打印实验装置的指南,并将显著减少确定最佳工艺参数的工作量。

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