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Sensing and actuating capabilities of a shape memory polymer composite integrated with hybrid filler

机译:集成了杂化填料的形状记忆聚合物复合材料的传感和驱动能力

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摘要

In this paper, hybrid fillers, including carbon black (CB) and chopped short carbon fibers (SCF), are integrated into a styrene-based shape memory polymer (SMP) with sensing and actuating capabilities. The hybrid filler is expected to transform insulating SMP into conducting. Static mechanical properties of the SMP composites containing various filler concentrations of hybrid filler reinforcement are studied first, and it is theoretically and experimentally confirmed that the mechanical properties are significantly improved by a factor of filler content of SCF. The excellent electrical properties of this novel type of SMP composite are determined by a four-point-probe method. As a consequence, the sensing properties of SMP composite filled with 5wt% CB and 2wt% SCF are characterized by functions of temperature and strain. These two experimental results both aid the use of SMP composites as sensors that respond to changes in temperature or mechanical loads. On the other hand, the actuating capability of SMP composites is also validated and demonstrated. The dynamic mechanical analysis result reveals that the output strength of SMP composites is improved with an increase in filler content of SCF. The actuating capability of SMP composites is subsequently demonstrated in a series of photographs.
机译:在本文中,包括炭黑(CB)和短切短碳纤维(SCF)在内的混合填料被集成到具有感测和驱动功能的苯乙烯基形状记忆聚合物(SMP)中。混合填料有望将绝缘SMP转变为导电材料。首先研究了各种浓度的杂化填料补强剂对SMP复合材料的静态力学性能,并且在理论和实验上证实,通过SCF填料含量的提高,力学性能得到了显着改善。这种新型SMP复合材料的优异电性能是通过四点探针法确定的。结果,填充有5wt%的CB和2wt%的SCF的SMP复合材料的感测特性由温度和应变的函数表征。这两个实验结果均有助于将SMP复合材料用作可响应温度或机械负载变化的传感器。另一方面,SMP复合材料的驱动能力也得到了验证和证明。动态力学分析结果表明,随着SCF填料含量的增加,SMP复合材料的输出强度得到提高。随后在一系列照片中证明了SMP复合材料的驱动能力。

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