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Inkjet printed kirigami inspired split ring resonator for disposable, low cost strain sensor applications

机译:喷墨印花Kirigami灵感的分体环谐振器用于一次性低成本应变传感器应用

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The purpose of this study was to produce a kirigami inspired split ring resonator (SRR) strain sensor. Since the SRR resonance frequency depends strongly on its split gap, one kirigami cut was designed to align with the SRR split gap, allowing SRR resonance frequency to be varied by applying tensile stress. The relationship between frequency and induced strain helps to explain the strain sensing mechanism. Two sheets of paper were used as the dielectric for compatibility with the kirigami technique, and a conductive pattern was inkjet printed on the top paper using silver nanoparticle ink, whereas the ground plane on the bottom paper was inkjet printed using stretchable ink. The two papers were bonded using epoxy strain sensor and S parameters for the fabricated sensor were measured at different strain levels. Resonance frequency increased from 4 to 4.64 GHz for 17.24% applied strain, with measured strain sensitivity = 4.2 x 10(7) Hz/% and minimum detectable strain level 0.84%. Measurement results were compared with simulation results. The proposed strain sensor is relatively easy to manufacture, low cost, and disposable because it was inkjet printed on paper.
机译:本研究的目的是生产Kirigami启发的分流环谐振器(SRR)应变传感器。由于SRR谐振频率在其分流间隙上强烈取决于其分流间隙,因此设计了一个Kirigami Cut以与SRR分流间隙对齐,允许通过施加拉伸应力来改变SRR谐振频率。频率和诱导应变之间的关系有助于解释应变传感机制。两张纸用作与Kirigami技术相容的电介质,并且使用银纳米粒子墨水在顶纸上印有导电图案,而底部纸上的接地平面是使用可拉伸油墨印刷的喷墨。使用环氧应变传感器键合两纸,并在不同的应变水平下测量制造传感器的S参数。共振频率从4至4.64GHz增加到17.24%的施加菌株,测定应变灵敏度= 4.2×10(7)Hz /%,最小可检测应变水平0.84%。将测量结果与仿真结果进行比较。所提出的应变传感器相对容易制造,成本低,一次性,因为它在纸上印有喷墨。

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