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A Piezoresistive Bacterial Cellulose- based Sensor for Axial Displacement Measurements

机译:基于压渗的细菌纤维素的传感器,用于轴向位移测量

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The paper introduces an organic axial displacement sensor based on Bacterial Cellulose, impregnated with a conducting polymer. The composite uses Bacterial Cellulose as the structural material, while the conducting polymer is absorbed. The piezoresistive properties of the composite have been studied with the aim of investigating the possibility of realizing all-polymeric strain sensors. Reported results show that the composite reacts to axial strains. Deformations up to 0.9 mm have been applied to a device, whose size is about 3.8 cmx l cm. The proposed sensing system can be a contribution to the realization of all-organic, flexible and low-cost mechanical sensors.
机译:本文介绍了基于细菌纤维素的有机轴向位移传感器,浸渍有导电聚合物。复合材料使用细菌纤维素作为结构材料,而导电聚合物被吸收。已经研究了复合材料的压阻性能,目的是研究实现全聚合物应变传感器的可能性。报道的结果表明,复合材料反应于轴向菌株。已将高达0.9mm的变形应用于设备,其尺寸约为3.8cmx厘米。所提出的传感系统可以是实现全有机,柔性和低成本机械传感器的贡献。

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