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首页> 外文期刊>International Journal of Materials, Mechanics and Manufacturing >Dielectric Polarization Enhancement of Thermoplastic Elastomers for Sensing and Energy Harvesting Applications
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Dielectric Polarization Enhancement of Thermoplastic Elastomers for Sensing and Energy Harvesting Applications

机译:用于传感和能量收集应用的热塑性弹性体的介电极化增强

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摘要

Nano-structured dielectric thermoplastic elastomers (DTEs) such as poly(styrene-co-ethylene-co-butylene-styrene) [SEBS] and poly(styrene-co-ethylene-co-butylene-styrene) –grafted- maleic anhydride[SEBS-g-MA] triblock co-polymers have been shown to have superior mechanical performances relative to conventional dielectric elastomers such as silicones because of their morphology; which comprises of continuous hard and soft block copolymers and physical cross-linking between same. However, historically their use in capacitive energy harvesting and sensing applications has been constrained by their relatively low dielectric permittivity. In this work, novel method for increasing the dielectric permittivity of DTE’s while maintaining their mechanical performance by using electrically active modifiers was evaluated. Preliminary results showed a 110% and 99% increase in the dielectric permittivity, and a 787% and 300% increase in the storage modulus, of SEBS and SEBS-g-MA respectively upon addition of 10% carbon black. The storage modulus will be decreased if the materials are pre-strained. These results also indicate that relative changes in the electrical properties of polymer-additive composites is polymer-additive compatibility dependent (i.e. 1.20% decrease in the dielectric permittivity of SEBS and a 32.72% increase in the dielectric permittivity of SEBS-g-MA was observed upon addition of 10% BaTiO3).
机译:纳米结构介电热塑性弹性体(DTE),例如聚(苯乙烯-乙烯-乙撑-丁烯-苯乙烯)[SEBS]和聚(苯乙烯-乙烯-乙撑-丁烯-苯乙烯)接枝马来酸酐[SEBS] -g-MA]三嵌段共聚物由于其形态而已显示出相对于常规的介电弹性体例如有机硅具有优异的机械性能。其中包含连续的硬嵌段共聚物和软嵌段共聚物,以及它们之间的物理交联。但是,从历史上看,它们在电容式能量收集和传感应用中的使用受到其相对较低的介电常数的限制。在这项工作中,评估了通过使用电活性改性剂来提高DTE介电常数同时保持其机械性能的新颖方法。初步结果显示,添加10%的炭黑后,SEBS和SEBS-g-MA的介电常数分别增加110%和99%,储能模量增加787%和300%。如果对材料进行预应变,则储能模量将降低。这些结果还表明,聚合物-添加剂复合材料的电性能的相对变化取决于聚合物-添加剂的相容性(即,观察到SEBS的介电常数降低1.20%,SEBS-g-MA的介电常数提高32.72%。加入10%BaTiO3时)。

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