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A Stretchable Pressure-Sensitive Array Based on Polymer Matrix

机译:基于聚合物基质的可拉伸压敏阵列

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摘要

Herein, a flexible 6 × 6 pressure-sensitive array (based on the PDMS (Polydimethylsiloxane) porous substrate) was designed. We have developed a facile method to fabricate the porous substrate, by a single-step operation using the sugar-template method. This strategy effectively diminishes the complexity of the preparation process, as well as the device structure. The electrical resistivity of the stretchable array demonstrates the negative piezo resistive coefficient (NPRC) under 0–100 kpa. Moreover, the pressure-sensitive array reveals a high sensitivity and low delay time (<0.5 s) to the applied forces. Therefore, the pressure distribution could be easily recognized by testing its conductivity changes. Besides, these signal data can be collected into the upper computer, with the purpose of tracking and analyzing the azimuth of the applied loading. This cost-effective micro array has a broad application prospect for fabricating the tactile sensor, artificial skin, and human-computer interfaces.
机译:在此,设计了柔性的6×6压敏阵列(基于PDMS(聚二甲基硅氧烷)多孔基板)。我们已经开发出一种简便的方法来制造多孔基材,方法是使用糖模板方法进行一步操作。该策略有效地减少了准备过程以及设备结构的复杂性。可拉伸阵列的电阻率显示出0-100 kpa以下的负压电电阻系数(NPRC)。此外,压敏阵列对施加的力显示出高灵敏度和低延迟时间(<0.5 s)。因此,通过测试其电导率变化可以轻松识别压力分布。此外,这些信号数据可以收集到上位机中,以跟踪和分析所施加载荷的方位角。这种具有成本效益的微阵列在制造触觉传感器,人造皮肤和人机界面方面具有广阔的应用前景。

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