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Package Analysis of 3D-Printed Piezo-Resistive Strain Gauge Sensors

机译:3D打印的压电电阻应变片传感器的包装分析

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Poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) or PEDOT:PSS is a flexible polymer which exhibits piezo-resistive properties when subjected to structural deformation. PEDOT:PSS has a high conductivity and thermal stability which makes it an ideal candidate for use as a pressure sensor. Applications of this technology includes whole body robot skin that can increase the safety and physical collaboration of robots in close proximity to humans. In this paper, we present a finite element model of strain gauge touch sensors which have been 3D-printed onto Kapton and silicone substrates using Electro-Hydro-Dynamic ink-jetting. Simulations of the piezo-resistive and structural model for the entire packaged sensor was carried out using COMSOL~®, and compared with experimental results for validation. The model will be useful in designing future robot skin with predictable performances.
机译:聚(3,4-乙撑二氧噻吩)-聚(苯乙烯磺酸盐)或PEDOT:PSS是一种柔性聚合物,在经受结构变形时会表现出压阻特性。 PEDOT:PSS具有高电导率和热稳定性,因此使其非常适合用作压力传感器。这项技术的应用包括全身机器人皮肤,可以提高机器人在靠近人类时的安全性和物理协作性。在本文中,我们介绍了应变计触摸传感器的有限元模型,该传感器已使用电子液压动态喷墨技术3D打印到Kapton和有机硅基板上。使用COMSOL®对整个封装传感器的压阻和结构模型进行了仿真,并与实验结果进行了比较以进行验证。该模型将对设计具有可预测性能的未来机器人皮肤很有用。

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