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Enhancement of Biodegradable Poly(Ethylene Oxide) Ionic–Polymer Metallic Composite Actuators with Nanocrystalline Cellulose Fillers

机译:具有纳米晶纤维素填料的可生物降解聚(环氧乙烷)离子 - 聚合物金属复合致动器的增强

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摘要

Biodegradable ionic polymer metallic composite (IPMC) electroactive polymers (EAPs) were fabricated using poly(ethylene oxide) (PEO) with various concentrations of lithium perchlorate. Nanocrystalline cellulose (NCC) rods created from a sulfuric acid hydrolysis process were added at various concentrations to increase the EAPs’ elastic modulus and improve their electromechanical properties. The electromechanical actuation was studied. PEONCC composites were created from combining a 35-mg/mL aqueous NCC suspension with an aqueous, PEO solution at varying vol.%. Due to an imparted space charge from the hydrolysis process, composites with an added 1.5 vol.% of NCC suspension exhibited an electromechanical tip displacement, strain, and elastic modulus that was 40.7%, 33.4% and 20.1% higher, respectively, than those for PEO IPMCs without NCC. This performance represented an increase of 300% in the energy density of these samples. However, the electromechanical response decreased when the NCC content was high. NCC without the space charge were also tested to verify the analysis. Additionally, the development of new relationships for modeling and evaluating the time-dependent instantaneous tip angular velocity and acceleration was discussed and applied to these IPMCs.
机译:可生物降解的离子聚合物金属复合体(IPMC)电活性聚合物(EAP),使用聚(环氧乙烷)被制造(PEO)与各种浓度的高氯酸锂。从硫酸水解过程中产生的纳米晶体纤维素(NCC)棒以各种浓度以增加的EAP的弹性模量和改善其机电性质加入。的机电致动进行了研究。 PEONCC复合材料从以不同的体积%35 mg / mL的NCC水悬浮液与水性,PEO溶液组合创建。由于来自水解工艺的赋予的空间电荷,与复合材料中加入1.5体积NCC悬浮液的%分别表现出的机电尖端位移,应变和弹性模量为40.7%,33.4%和20.1%时,比那些用于PEO IPMCS没有NCC。这种性能表示在这些样品的能量密度增加了300%。然而,当NCC含量高的机电响应降低。 NCC没有空间电荷也进行了测试,以验证分析。此外,的用于建模和评估依赖于时间的瞬时尖的角速度及加速度新的关系的发展进行了讨论和应用于这些IPMCS。

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