Zymelka Daniel, Yamashita Takahiro, Sun Xiuru, Kobayashi Takeshi
National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki 305-8564, Japan.
Sensors (Basel). 2020 Jul 28;20(15):4181. doi: 10.3390/s20154181.
In this study, we demonstrate a strain sensor fabricated as a hybrid structure of a conductive intermittent pattern with embedded single droplets of a functional resistive ink. The main feature of our proposed sensor design is that although the intermittent pattern comprises the majority of the entire sensor area, the strain sensitivity depends almost selectively on the resistive droplets. This opens up the possibility for fast and inexpensive evaluation of sensors manufactured from various functional materials. As the use of resistive ink was limited to single droplets deposition, the required ink amount needed to build a sensor can be considerably reduced. This makes the sensors cost-effective and simple for fabrication. In this study, our proposed sensor design was evaluated when a carbon-based ink was used as the resistive material incorporated into an intermittent structure made of silver. The developed strain sensors were tested during bending deformations demonstrating good strain sensitivity (gauge factor: 7.71) and no hysteresis within the investigated strain range.
在本研究中,我们展示了一种应变传感器,它被制作为具有嵌入功能电阻油墨单液滴的导电间断图案的混合结构。我们所提出的传感器设计的主要特点是,尽管间断图案占整个传感器面积的大部分,但应变灵敏度几乎选择性地取决于电阻液滴。这为快速且低成本地评估由各种功能材料制造的传感器开辟了可能性。由于电阻油墨的使用仅限于单液滴沉积,构建一个传感器所需的油墨量可大幅减少。这使得传感器具有成本效益且制造简单。在本研究中,当使用碳基油墨作为电阻材料并入由银制成的间断结构中时,对我们所提出的传感器设计进行了评估。所开发的应变传感器在弯曲变形过程中进行了测试,结果表明其具有良好的应变灵敏度(应变片系数:7.71),并且在所研究的应变范围内没有滞后现象。