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Thermal, Mechanical and Magneto-Mechanical Characterization of Liquid Crystalline Elastomers Loaded with Iron Oxide Nanoparticles

机译:液晶弹性体的热,机械和磁力机械表征载氧化铁纳米粒子

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Liquid crystalline elastomers (LCEs) are materials that reveal unusual mechanical, optical and thermal properties due to their molecular orientability characteristic of low molar mass liquid crystals while maintaining the mechanical elasticity distinctive of rubbers. As such, they are considered smart shape-changing responsive systems. In this work, we report on the preparation of magnetic sensitized nematic LCEs using iron oxide nanoparticles with loadings of up to 0.7 wt%. The resultant thermal and mechanical properties were characterized by differential scanning calorimetry, expansion/contraction experiments and extensional tests. The magnetic actuation ability was also evaluated for the neat elastomer and the composite with 0.5 wt% magnetic content, finding reversible contractions of up to 23% with the application of alternating magnetic fields (AMFs) of up to 48 kA/m at 300 kHz. Thus, we were able to demonstrate that the inclusion of magnetic nanoparticles yields LCEs with adjustable properties that can be tailored by changing the amount of particles embedded in the elastomeric matrix, which can be suitable for applications in actuation, sensing, or as smart substrates.
机译:液晶弹性体(LCE)是揭示由于低摩尔质量液晶的分子可取向特性而导致不寻常的机械,光学和热性能的材料,同时保持橡胶的机械弹性。因此,它们被认为是智能形状改变的响应系统。在这项工作中,我们用氧化铁纳米颗粒的载氧化物纳米颗粒的制备报告了高达0.7wt%的载氧化铁纳米颗粒。通过差示扫描量热法,膨胀/收缩实验和延伸试验表征所得的热和机械性能。磁性致动的能力,也评价纯弹性体,并用0.5%(重量)磁性含量的复合材料,在300千赫发现高达23%,最多的交变磁场(AMFS)的应用的可逆收缩到48千安/米。因此,我们能够证明包含磁性纳米颗粒的包含可调节性能,可通过改变弹性体基质中嵌入的颗粒的量来定制,这可以适用于致动,感测或作为智能基板中的应用。

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