Division of Information and Computing Technology, College of Science and Engineering, Hamad Bin Khalifa University, Doha 34110, Qatar.
Sensors (Basel). 2019 Oct 30;19(21):4713. doi: 10.3390/s19214713.
This work presents a cost-effective shadow mask printing approach to fabricate flexible sensors. The liquid-state sensing material can be directly brushed on a flexible substrate through a shadow mask. The ink leakage issue which often occurs in printed electronics is addressed with a custom taping scheme. A simple thermal compression bonding approach is also proposed to package the functional area of the sensor. To verify the feasibility and robustness of the proposed fabrication approach, a prototyped strain gauge displacement sensor is fabricated using carbon ink as the sensing material and a flexible polyimide (PI) film as the substrate. Once the substrate is deformed, cracks in the solidified ink layer can cause an increased resistance in the conductive path, thus achieving function of stable displacement/strain sensing. As a demonstration for displacement sensing application, this sensor is evaluated by studying its real-time resistance response under both static and dynamic mechanical loading. The fabricated sensor shows a comparable performance (with a gauge factor of ~17.6) to those fabricated using costly lithography or inkjet printing schemes, while with a significantly lower production cost.
本工作提出了一种经济高效的荫罩印刷方法来制造柔性传感器。液态感测材料可以通过荫罩直接刷在柔性基底上。通过定制的贴合方案解决了在印刷电子中经常出现的油墨泄漏问题。还提出了一种简单的热压合方法来封装传感器的功能区域。为了验证所提出的制造方法的可行性和鲁棒性,使用碳油墨作为感测材料和柔性聚酰亚胺(PI)薄膜作为基底来制造原型应变计位移传感器。一旦基底发生变形,固化油墨层中的裂纹会导致导电路径中的电阻增加,从而实现稳定的位移/应变感测功能。作为对位移感测应用的演示,通过研究传感器在静态和动态机械加载下的实时电阻响应来评估该传感器。所制造的传感器表现出与使用昂贵的光刻或喷墨打印方案相当的性能(应变系数约为 17.6),而生产成本却大大降低。