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FABRICATING MICROCHANNELS IN ELASTOMER SUBSTRATES FOR STRETCHABLE ELECTRONICS

机译:在弹性体基材中制造微通道,可拉伸电子器件

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摘要

As flexible devices and machines become more ubiquitous, there is a growing need for similarly deformable electronics. Soft polymers continue to be widely used as stretchable and flexible substrates for soft electronics, and in particular, soft sensing. These soft sensors generally consist of a highly elastic substrate with embedded microchannels filled with a conductive fluid. Deforming the substrate deforms the embedded microchannels and induces a change in the electrical resistance through the conductive fluid. Microchannels, thus, are the foundation of flexible electronic devices and sensors. These microchannels have been fabricated using various methods, where the manufacturing method greatly impacts device functionality. In this paper, comparisons are made between the following methods of microchan-nel manufacturing: cast molding, 3D printing of the elastomer substrate itself, and laser ablation. Further processing of the microchannels into flexible electronics is also presented for all three methods. Lastly, recommended ranges of microchannel sizes and their associated reproducibility and accuracy measures for each manufacturing method are presented.
机译:随着柔性器件和机器变得更加普遍,对类似可变形的电子产品的需求越来越大。软聚合物继续被广泛地用作软电子的可拉伸和柔性基板,特别是柔和的感测。这些柔软传感器通常由具有填充有导电流体的嵌入式微通道的高弹性基板组成。使基板变形使嵌入的微通道变形并引起通过导电流体的电阻的变化。因此,微通道是柔性电子设备和传感器的基础。这些微通道已经使用各种方法制造,其中制造方法大大影响了设备功能。在本文中,在下列微春 - NEL制造方法之间进行比较:弹性体衬底本身的浇铸成型,3D印刷和激光烧蚀。对于所有三种方法,还呈现了将微通道的进一步加工进一步处理柔性电子器件。最后,提出了推荐的微通道尺寸范围及其相关的每种制造方法的相关性再现性和准确度措施。

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