Elkaseer Ahmed, Schneider Stella, Deng Yaqi, Scholz Steffen G
Institute for Automation and Applied Informatics, Karlsruhe Institute of Technology, 76344 Eggenstein-Leopoldshafen, Germany.
Karlsruhe Nano Micro Facility, Karlsruhe Institute of Technology, Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
Polymers (Basel). 2022 Jun 23;14(13):2557. doi: 10.3390/polym14132557.
As additive manufacturing has evolved, 3D inkjet printing (IJP) has become a promising alternative manufacturing method able to manufacture functional multi-material parts in a single process. However, issues with part quality in terms of dimensional errors and lack of precision still restrict its industrial and commercial applications. This study aims at improving the dimensional accuracy of 3D IJP parts by developing an optimization-oriented simulation tool of droplet behavior during the drop-on-demand 3D IJP process. The simulation approach takes into consideration the effect of droplet volume, droplet center-to-center distance, coverage percentage of jetted droplets, the contact angle of the ink on the solid substrate and coalescence performance of overlapping droplets, in addition to the number of printed layers. Following the development of the simulation tool using MATLAB, its feasibility was experimentally validated and the results showed a good agreement with a maximum deviation of 2.25% for horizontal features. In addition, the simulated horizontal features are compared with the results of "Inkraster" software, which also illustrates droplet behavior, however, only in 2D. For vertical features, a dial gauge indicator is used to measure the sample height, and the validation results show that the simulation tool can predicate the height of the sample with an average error of 10.89% for a large droplet diameter and 8.09% for a small diameter. The simulation results were found to be in a good agreement with the dimensions of the printed parts. The developed tool was then used to elucidate the effect of resolution of processed TIFF image and droplet diameter on the dimensional accuracy of 3D IJP parts.
随着增材制造的发展,三维喷墨打印(IJP)已成为一种很有前景的替代制造方法,能够在单一工艺中制造功能性多材料部件。然而,在尺寸误差和缺乏精度方面的部件质量问题仍然限制了其工业和商业应用。本研究旨在通过开发一种面向优化的按需滴注三维IJP过程中液滴行为模拟工具,提高三维IJP部件的尺寸精度。该模拟方法除了考虑打印层数外,还考虑了液滴体积、液滴中心距、喷射液滴的覆盖率、油墨在固体基板上的接触角以及重叠液滴的聚结性能的影响。在使用MATLAB开发模拟工具之后,通过实验验证了其可行性,结果表明两者吻合良好,水平特征的最大偏差为2.25%。此外,将模拟的水平特征与“Inkraster”软件的结果进行了比较,该软件也能说明液滴行为,但仅限于二维。对于垂直特征,使用百分表测量样品高度,验证结果表明,对于大液滴直径,模拟工具能够预测样品高度,平均误差为10.89%,对于小直径液滴,平均误差为8.09%。发现模拟结果与打印部件的尺寸吻合良好。然后使用所开发的工具来阐明处理后的TIFF图像分辨率和液滴直径对三维IJP部件尺寸精度的影响。