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Composite rubber electret with piezoelectric 31 and 33 modes for elastically electromechanical sensors

机译:具有压电31和33模式的复合橡胶驻极体用于弹性机电传感器

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This study has demonstrated the design and fabrication of wearable piezoelectric PDMS rubber microstructures with d_(31) and d_(33) modes. This PDMS microstructure shows a strong piezoelectricity with effective piezoelectric coefficient (d_(31)) and (d_(33)) of approximately 235 and 3350 pC/N, the lower effectively elastic modulus (E) and spring constant (k) are approximate 300 kPa and 250 N/m, respectively. PDMS microstructures have micrometer-sized voids inside and open channels, which can connect to ambient atmospheres. Internal patterns inside rubber electrets can be designed and adjusted its piezoelectricity, by means of utilizing multi-layer casting, stacking, surface coated with PTFE films, elastic gold films as flexible electrodes, and micro plasma discharge processes applied with a triangular waveform and electric field of 35 MV/m for 15 minutes at 100°C to produce the functions as electrets. In conclusion, the piezoelectricity of PDMS microstructures could be tailored by adjusting the dimensions of the cellular voids, and potentially serve as wearable, stretchable MEMS devices with high sensitivities.
机译:本研究表明,具有D_(31)和D_(33)模式的可穿戴式压电PDMS橡胶微结构的设计和制造。该PDMS微结构示出了具有有效压电系数(D_(31))的强压电性(D_(31))和大约235和3350pc / n的(D_(33)),较低有效的弹性模量(e)和弹簧常数(k)是近似300的KPA和250 N / m。 PDMS微结构内部和打开通道具有千分尺寸的空隙,可连接到环境环境。橡胶驻极体内部的内部图案可被设计和调整它的压电性,通过利用多层浇铸,堆垛的装置,施加三角波形和电场表面涂覆有PTFE膜,弹性金膜作为柔性电极,和微等离子体放电过程在100°C下为35mV / m 15分钟,以产生闪电功能。总之,通过调节蜂窝空隙的尺寸,并且可能用作具有高灵敏度的可穿戴的可耐磨MEMS器件来定制PDMS微观结构的压电性。

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