Preparation and Dielectric Sensitivity of Polyurethane Composite Fiber Membrane Filled with BaTiO3

IF 3.3 4区 工程技术 Q2 CHEMISTRY, PHYSICAL Membranes Pub Date : 2022-03-26 DOI:10.3390/membranes12040364
G. Lu, C. Shuai, Yinsong Liu, Xue Yang, Xiaoyang Hu
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引用次数: 1

Abstract

Polyurethane dielectric elastomer (PUDE) is considered a potential underwater flexible actuator material due to its excellent designability and environmental tolerance at the molecular level. Currently, the application of the polyurethane elastomer as an actuating material is constrained by such problems as the conflict between various properties such as dielectric properties and modulus and the low level of dielectric sensitivity. This is a common challenge facing polyurethane dielectric research related to the uneven distribution of dielectric fillers in the matrix. Besides, another challenge for the academic circles is the easy agglomeration of micro and nanofillers. Given the above-mentioned background of the application and technical problems, the coaxial electrospinning technology is proposed in this paper. The polyurethane fiber network is constructed with the preferred hydrolysis resistant polyether-Diphenylmethane diisocyanate (MDI) thermoplastic polyurethane elastomer as the matrix material. Dispersed by ultrasound, the micro nano dielectric filler is integrated into polyurethane fiber through the coaxial dual-channel design. Additionally, directional constraint molding is conducted to improve the agglomeration of small-scale particles induced by the loss of mechanical energy in traditional blending. After characterization, the distribution of BaTiO3 particles in the fiber bundle is relatively uniform. Compared to the polyurethane dielectric composites prepared by traditional blending (BaTiO3-Dielectric Elastomer, BaTiO3-DE), the dielectric sensitivity factor of the polyurethane composite fiber membrane (BaTiO3-Dielectric Elastomer Membrane, BaTiO3-DEM) is enhanced by over 25%; the electrostrictive strain of BaTiO3-DEM is boosted by least 10%.
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BaTiO3填充聚氨酯复合纤维膜的制备及其介电敏感性
聚氨酯介电弹性体(PUDE)由于其优异的可设计性和分子水平上的环境耐受性,被认为是一种潜在的水下柔性致动器材料。目前,聚氨酯弹性体作为致动材料的应用受到诸如介电性质和模量等各种性质之间的冲突以及低水平的介电灵敏度等问题的限制。这是聚氨酯电介质研究面临的一个常见挑战,涉及电介质填料在基体中的不均匀分布。此外,学术界面临的另一个挑战是微米和纳米填料的容易聚集。鉴于上述应用背景和技术问题,本文提出了同轴静电纺丝技术。聚氨酯纤维网络是以优选的抗水解聚醚二苯基甲烷二异氰酸酯(MDI)热塑性聚氨酯弹性体为基体材料构建的。微纳米介电填料经超声分散后,通过同轴双通道设计集成到聚氨酯纤维中。此外,还进行了定向约束成型,以改善传统共混中由于机械能损失而引起的小颗粒团聚。表征后,BaTiO3颗粒在纤维束中的分布相对均匀。与传统共混制备的聚氨酯介电复合材料(BaTiO3介电弹性体,BaTiO3-DE)相比,聚氨酯复合纤维膜(BaTiO3-介电弹性膜,BaTiO3 DEM)的介电敏感系数提高了25%以上;BaTiO3 DEM的电致伸缩应变提高了至少10%。
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来源期刊
Membranes
Membranes Chemical Engineering-Filtration and Separation
CiteScore
6.10
自引率
16.70%
发文量
1071
审稿时长
11 weeks
期刊介绍: Membranes (ISSN 2077-0375) is an international, peer-reviewed open access journal of separation science and technology. It publishes reviews, research articles, communications and technical notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided.
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