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Synthesis and electromechanical characterization of a new acrylic elastomer with high actuation strain and dielectric strength

机译:具有高驱动应变和介电强度的新型丙烯酸弹性体的合成和机电特性

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Dielectric Elastomers (DEs) can be actuated under high electric field to produce large strains. Most high-performing DE materials such as the 3M™ VHB™ membranes are commercial products designed for industrial pressure-sensitive adhesives. The limited knowledge of the exact chemical structures of these commercial materials has made it difficult to understand the relationship between molecular structures and electromechanical properties. In this work, new acrylic elastomers based on n-butyl acrylate and acrylic acid were synthesized from monomer solutions by UV-initiated bulk polymerization. The new acrylic copolymers have a potential to obtain high dielectric constant, actuation strain, dielectric strength, and a high energy density. Silicone and ester oligomer diacrylates were also added onto the copolymer structures to suppress crystallization and to crosslink the polymer chains. Four acrylic formulations were developed with different amounts of acrylic acid. This gives a tunable stiffness, while the dielectric constant is varied from 4.3 to 7.1. The figure-of-merit performance of the best formulation is 186 % area strain, 222 MV/m of dielectric strength, and 2.7 MJ/m~3 of energy density. To overcome electromechanical instability, different prestrain ratios were investigated, and under the optimized prestrain, the material has a lifetime of thousands of cycles at 120 % area strain.
机译:介电弹性体(DEs)可以在高电场下致动,以产生较大的应变。大多数高性能的DE材料(例如3M™VHB™膜)是为工业压敏胶而设计的商业产品。这些商业材料的确切化学结构的知识有限,使得很难理解分子结构与机电性能之间的关系。在这项工作中,通过紫外线引发的本体聚合反应,从单体溶液中合成了基于丙烯酸正丁酯和丙烯酸的新型丙烯酸弹性体。新型丙烯酸共聚物具有获得高介电常数,致动应变,介电强度和高能量密度的潜力。硅氧烷和酯低聚物二丙烯酸酯也被添加到共聚物结构上以抑制结晶并交联聚合物链。开发了四种丙烯酸配方,其中含有不同数量的丙烯酸。当介电常数从4.3变到7.1时,这提供了可调的刚度。最佳配方的品质因数性能为186%面积应变,222 MV / m的介电强度和2.7 MJ / m〜3的能量密度。为了克服机电不稳定性,研究了不同的预应变比,并在优化的预应变下,该材料在120%面积应变下的寿命为数千次循环。

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