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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Experimental Study on Polymer Nanocomposites Based Strain Sensors for Structural Health Monitoring
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Experimental Study on Polymer Nanocomposites Based Strain Sensors for Structural Health Monitoring

机译:基于聚合物纳米复合材料的结构健康监测的菌株传感器试验研究

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The aim is to develop a mechanically flexible polymer nanocomposite film-based strain sensors that could act towards sustainable structural health monitoring for civil structures. The developed polymer nanocomposite film combinations will be monitored for their structural, electrical and mechanical behaviors and the optimized formulations will be tried for strain sensing applications. The films were cast by using PVA as the base polymer and copper doped silver nitrate as the nanofiller along with the use of glycine as fuel which is a combination of silver and copper nitrate. After preparing the films, they were tested for conductivity under tensile loading using a digital multi meter connected to a UTM. The samples were subjected to XRD, FTIR and SEM for further analysis. The results of the experiments shown I-V characteristics of PVA-CuAgO composites from 5% to 25% CuAgO have been increased tremendously with the incorporation of filler material. For 100 V, the maximum current value obtained for plain PVA is only 7.7E-8 A, whereas CuAgO particles shown 0.0025 A at 5% reinforcements and further increased nearly to 0.025 A for 25% of CuAgO particles into the PVA matrix.
机译:目的是开发一种机械柔性聚合物纳米复合薄膜的应变传感器,可用于公民结构的可持续结构健康监测。将监测发育的聚合物纳米复合膜组合,用于其结构,电气和机械行为,并且优化的配方将被试图用于应变传感应用。通过使用PVA作为基础聚合物和铜掺杂的硝酸盐作为纳米填充物的粉末铸造薄膜以及甘氨酸作为燃料,这是银和硝酸铜的组合。在制备薄膜之后,使用连接到UTM的数字多仪表在拉伸载荷下进行导电性。将样品进行XRD,FTIR和SEM进行进一步分析。用填料掺入,实验所示的实验结果从5%至25%的uGAGO的PVA-Cuago复合材料的特征从5%到25%的Cuago增加。对于100V,普通PVA获得的最大电流值仅为7.7E-8A,而Quago颗粒在5%增强率下显示为0.0025A,并且进一步增加到0.025A的Quago颗粒进一步增加到PVA基质中。

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