Krause Michael, Marshall Analise, Catterlin Jeffrey K, Hornik Terak, Kartalov Emil P
MOVES Institute, Naval Postgraduate School, 1 University Circle, Monterey, CA 93943, USA.
Physics Department, Naval Postgraduate School, 1 University Circle, Monterey, CA 93943, USA.
Micromachines (Basel). 2024 Mar 13;15(3):389. doi: 10.3390/mi15030389.
Negative features in microdevices find a wide range of applications. The process of 3D printing has revolutionized their fabrication due to the combination of good resolution and integration capability. Herein, we report on a systematic study of the effects of materials and print directions on the 3D printing of microfluidic channels as negative features under PolyJet technology. Specifically, the Statasys Objet500 printer was used for this study. We printed two sets of chips (n=10 each), each of which contains channel pairs of a high-contrast reference material and a sacrificial material, respectively. Both materials were embedded in a clear photopolymer resin. The channel pairs ranged in planned width from 64 to 992 μm. To explore the effect on print orientation, channels were printed either parallel or perpendicular with respect to the jetting head's movement. The width of each channel of a pair was compared for each planned width and each combination of materials. The effect of print orientation on channel morphology was also investigated. We found that reproducibility and accuracy were highest at a planned channel width of approximately ≥600 μm and that channel morphology was most suitable when the jetting head of the printer moved parallel to the channel's longitudinal axis. The results should be of interest to any users who wish to create negative features using PolyJet 3D technology.
微器件中的负特征有着广泛的应用。3D打印技术因其良好的分辨率和集成能力,彻底改变了它们的制造过程。在此,我们报告了一项关于材料和打印方向对PolyJet技术下作为负特征的微流控通道3D打印影响的系统研究。具体而言,本研究使用了Stratasys Objet500打印机。我们打印了两组芯片(每组n = 10),每组芯片分别包含由高对比度参考材料和牺牲材料构成的通道对。两种材料都嵌入在透明的光聚合物树脂中。通道对的计划宽度范围为64至992μm。为了探究对打印方向的影响,通道打印方向与喷头移动方向平行或垂直。针对每个计划宽度以及每种材料组合,比较了通道对中每个通道的宽度。还研究了打印方向对通道形态的影响。我们发现,当计划通道宽度约≥600μm时,再现性和准确性最高,并且当打印机的喷头平行于通道的纵轴移动时,通道形态最为合适。这些结果对于任何希望使用PolyJet 3D技术创建负特征的用户来说都应该是有意义的。