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Copper wire based electrical contacts for direct interfacing of stretchable sensors

机译:基于铜线的电触点,用于可拉伸传感器的直接接口

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Stretchable sensors based on piezoresistive polymers enable new conformal and biocompatible wearables. However, physically interfacing such structures to create electrical contacts is still challenging. This is due to the localisation of stresses at the interface between soft polymers and metallic interconnections. Even if stretchable contacts or conditioning circuits are realised, there must be a rigid-soft interface to connect stretchable structures with conventional devices. Here, five ways to electrically connect soft Ecoflex based strain sensors are evaluated. The results show that a filament cable exhibits the most stable behaviour under cyclic loading of the contacts, while using a multi strand cable or a copper mesh results in lower contact resistance. In addition, loading forces from 0.27 N to 6.92 N are supported. Finally, stretchable piezoresistive strain sensors are fabricated using the 5 different contact methods. Employing customised interfaces with an optimal performance trade-off will help to establish reliable contacts with future stretchable electronics.
机译:基于压阻性聚合物的可拉伸传感器使新的保形和生物相容性的可穿戴性能能够。然而,物理地接合这种结构以产生电触点仍然具有挑战性。这是由于软聚合物和金属互连之间的界面处的应力的定位。即使实现了可伸缩的触点或调节电路,也必须有一个刚性 - 软界面,以将可拉伸结构与传统装置连接。这里,评估了电连接软电子弹簧基弹性传感器的五种方法。结果表明,灯丝电缆在触点的循环加载下表现出最稳定的行为,同时使用多链电缆或铜网导致较低的接触电阻。此外,支持从0.27 n至6.92n的装载力。最后,使用5种不同的接触方法制造可拉伸的压阻式应变传感器。使用具有最佳性能权衡的定制接口将有助于与未来可拉伸电子设备建立可靠的接触。

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