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The resistivity-strain behavior of conductive polymer composites: stability and sensitivity

机译:导电聚合物复合材料的电阻应变特性:稳定性和灵敏度

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摘要

The use of conductive polymer composites (CPCs) for strain sensing applications has attracted intense interest lately. The stability and sensitivity of resistivity-strain behaviour are thought to be important issues, but systematic investigations are missing. Herein, the resistivity-strain behavior in terms of stability and sensitivity of CPCs based on poly(styrene-butadiene-styrene) (SBS) containing multiwalled carbon nanotubes (MWCNTs) are studied. It is demonstrated that the preparation method has an important influence on the resistivity-strain behavior of these CPCs. Under linear uniaxial strain, the sensitivity increases with decreasing filler content for both composites, showing higher strain sensitivity near the percolation threshold. Moreover, a higher and wider range of sensitivities is obtained for SBS/ MWCNT composites from melt mixing. Under dynamic strain, resistivity downward drifting and shoulder peaks are shown for composites from melt mixing, while linear relationships and reversible resistivity in every cycle are observed for composites from solution mixing, showing good electromechanical consistency, stability and durability. From the TEM, rheology, SEM, SAXS, Raman microscopy and analytical modeling studies, the difference in morphology is thought to be responsible, for such resistivity-strain behavior. As more disordered and less densely packed conductive networks in melt-mixed CPCs are more easily destroyed under strain, evenly distributed and densely packed networks in solution mixed CPCs are more stable during cyclic stretching. Finally, human knee motions have been detected using these CPCs, demonstrating a potential application of these CPCs as movement sensors.
机译:导电聚合物复合材料(CPC)在应变传感应用中的使用近来引起了人们的极大兴趣。电阻率-应变行为的稳定性和敏感性被认为是重要的问题,但缺乏系统的研究。在本文中,研究了基于含多壁碳纳米管(MWCNT)的聚(苯乙烯-丁二烯-苯乙烯)(SBS)的CPC的电阻率-应变行为的稳定性和敏感性。结果表明,制备方法对这些CPC的电阻率-应变行为有重要影响。在线性单轴应变下,两种复合材料的灵敏度均随填料含量的降低而增加,在渗流阈值附近显示出较高的应变灵敏度。而且,通过熔融混合获得对于SBS / MWCNT复合物的更高和更宽的灵敏度范围。在动态应变下,熔融混合的复合材料显示出电阻率向下漂移和肩峰,而溶液混合的复合材料在每个循环中均观察到线性关系和可逆电阻率,显示出良好的机电一致性,稳定性和耐久性。从TEM,流变学,SEM,SAXS,拉曼显微镜和分析模型研究来看,形态上的差异被认为是造成这种电阻率-应变行为的原因。由于熔体混合CPC中更无序且密度较小的导电网络在应变作用下更容易破坏,因此溶液混合CPC中均匀分布且密度较高的网络在循环拉伸过程中更加稳定。最终,使用这些CPC可以检测到人的膝盖运动,这证明了这些CPC作为运动传感器的潜在应用。

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