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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Optimization of experimental parameters to determine the jetting regimes in electrohydrodynamic printing
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Optimization of experimental parameters to determine the jetting regimes in electrohydrodynamic printing

机译:优化实验参数以确定电动流体动力印刷中的喷射方式

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摘要

The harmony of ink and printing method is of importance in producing on-demand droplets and jets of ink. Many factors including the material properties, the processing conditions, and the nozzle geometry affect the printing quality. In electrohydrodynamic (EHD) printing where droplets or jets are generated by the electrostatic force, the physical as well as the electrical properties of the fluid should be taken into account to achieve the desired performance. In this study, a systematic approach was suggested for finding the processing windows of the EHD printing. Six dimensionless parameters were organized and applied to the printing system of ethanol/terpineol mixtures. On the basis of the correlation of the dimensionless voltage and the charge relaxation length, the jet diameter of cone-jet mode was characterized, and the semicone angle was compared with the theoretical Taylor angle. In addition, the ratio of electric normal force and electric tangential force on the charged surface of the Taylor cone was recommended as a parameter that determines the degree of cone-jet stability. The cone-jet became more stable as this ratio got smaller. This approach was a systematic and effective way of obtaining the Taylor cone of the cone-jet mode and evaluating the jetting stability. The control of the inks with optimized experimental parameters by this method will improve the jetting performance in EHD inkjet printing.
机译:油墨和印刷方法的协调对产生按需的油墨滴和喷射很重要。包括材料特性,加工条件和喷嘴几何形状在内的许多因素都会影响打印质量。在电动流体动力学(EHD)印刷中,静电力会产生液滴或喷射,应考虑流体的物理和电学特性,以实现所需的性能。在这项研究中,提出了一种系统的方法来查找EHD打印的处理窗口。整理了六个无量纲参数并将其应用于乙醇/萜品醇混合物的印刷系统。基于无量纲电压和电荷弛豫长度的相关性,表征了锥喷射模式的射流直径,并将半圆锥角与理论泰勒角进行了比较。此外,建议将泰勒锥的带电表面上的法向电势和切线电势之比作为确定锥喷头稳定性程度的参数。随着该比例变小,圆锥射流变得更加稳定。该方法是获得圆锥喷射模式的泰勒圆锥并评估喷射稳定性的系统有效方法。通过这种方法控制具有最佳实验参数的墨水将改善EHD喷墨打印中的喷射性能。

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