Soft-template synthesis of hierarchically porous structured polydimethylsiloxane toward flexible capacitive pressure sensor

被引:0
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作者
ShiXue He
Jian Wu
YanHao Duan
BenLong Su
ShouYao Liu
Fei Teng
YouShan Wang
机构
[1] Harbin Institute of Technology,School of Mechatronics Engineering
[2] Harbin Institute of Technology,National Key Laboratory of Science and Technology on Advanced Composites in Special Environments
[3] Harbin Institute of Technology,Center for Rubber Composite Materials and Structures
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关键词
hierarchically porous structured; flexible pressure sensor; capacitive response mechanism; hydrogel/silicone rubber emulsion;
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学科分类号
摘要
Flexible pressure sensors play an important role in the field of monitoring, owing to their inherent safety and the fact that they are embedded at the material level. Capacitive pressure sensors have been proven to be quite versatile, with the ability to change the sensitivity and monitoring range by modifying the pore structure of the dielectric layer (elastic modulus). In this paper, capacitive pressure sensors are devised, comprising hierarchical porous polydimethylsiloxane. Due to the inherent hollow and hierarchical micropore structure, the capacitive pressure sensor allows operation at a wider pressure range (~1000 kPa) while maintaining sensitivity (6.33 MPa−1) in the range of 0–300 kPa. Subsequently, the capacitance output model of the sensor is optimized, which provides an overall approximation of the experimental values for the sensor performance. Additionally, the signal response of the “break up the whole into parts” (by analysis of the whole sensor in parts) is simulated and outputted by the finite element analysis. The simplified analysis model provides a good understanding of the relationship between the local pressure and the signal response of the pressure sensor. For practical applications, seal monitoring and rubber wheel pressure array system are tested, and the proposed sensor shows sufficient potential for application in large deformation elastomer products.
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页码:2696 / 2706
页数:10
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