首页> 外文期刊>Journal of Thermoplastic Composite Materials >Thermal, mechanical, dielectric, and morphological study of dielectric filler-based thermoplastic nanocomposites for electromechanical applications
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Thermal, mechanical, dielectric, and morphological study of dielectric filler-based thermoplastic nanocomposites for electromechanical applications

机译:介电填料基热塑性纳米复合材料的热,机械,电介质和形态学研究,用于机电应用

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摘要

Dielectric nanocomposite elastomers based on poly(styrene-ethylene/butylene-styrene) (SEBS) and SEBS-grafted-maleic anhydride (SEBS-g-MA) with barium titanate (BT) suitable for electroactive applications were successfully manufactured by using two corotating twin extrusion systems. The main purpose of the work was to investigate the thermal, mechanical, dielectric, and morphological effects of additives on SEBS and SEBS-g-MA to widen their applications for electroactive applications using fast and more cost-effective simple production process. The morphological characterization showed a good and bad dispersion of BT into SEBS-g-MA and SEBS with 34.9% and -3% dielectric permittivity change in SEBS-g-MA and SEBS upon addition of 10 wt% BT. In addition, dielectric permittivity change, thermal change (enthalpy relaxation and thermal transitions), and mechanical (Young's modulus, hysteresis loss under multiple stress cycles, storage modulus, loss modulus, and tan ) properties of elastomers were found to be a function of additive concentration, compatibility and interaction between elastomers and additive type, orientation of additives, and reinforcing factors of additives in elastomers. A simple and effective modeling technique was used to demonstrate the effects of dielectric properties on nanocomposites due to poor dispersion of additives.
机译:基于聚(苯乙烯 - 乙烯/丁烯 - 苯乙烯)(SEBS)和SEBS-接枝 - 马来酸酐(SEBS-G-MA)的介电纳米复合材料弹性体,其具有适用于电活性应用的钛酸钡(BT)的钛酸钡(BT),通过使用两个刻度双胞胎制造挤出系统。该工作的主要目的是研究SEBS和SEBS-G-MA上添加剂的热,机械,电介质和形态学作用,用于使用快速更具成本效益的简单生产过程来扩大其用于电活性应用的应用。形态学表征在加入10wt%BT时显示出SEBS-G-MA和SEBS的良好且不差,SEBS-G-MA和SEBBS,SEBS-G-MA和SEBS中的介电常数变化为34.9%和-3%。另外,发现介电介电常数变化,热变化(焓弛豫和热转变),以及机械(杨氏模量,在多重应力循环,储存模量,损耗模量和TAN)的弹性体的性能是添加剂的函数弹性体和添加剂的浓度,相容性和相互作用,添加剂取向以及弹性体中添加剂的增强因子。一种简单且有效的建模技术用于证明由于添加剂不良分散的介电性质对纳米复合材料的影响。

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