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Soft Elastic Modulus and High Dielectric Constant: a Synergistic Matching for Elastomeric Actuators

机译:软弹性模量和高介电常数:弹性致动器的协同匹配

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Dielectric elastomer actuators represent an emerging technology for polymer based electro-mechanical transduction. Owing to its good mechanical and electrical properties, in fact, that assure large strains and relatively high breakdown strengths, this kind of material is particularly suitable for actuation. Different configurations for expanding and contractile devices have been already developed but many are the unexplored potentialities of the field. In order to further develop the dielectric elastomer technology, a step forward in the direction of reducing the driving voltages should be done. With a reference to the current state of the art on the topic, the present paper describes the dielectric, mechanical and electromechanical performance of different elastomeric actuators prepared by adding inorganic and organic fillers (such as ceramic ferroelectric and carbon black powders, carbon nanotubes, conjugated polymers) to a commercial soft silicone rubber, easy to manufacture and extremely cheap. The possibility to enhance the real dielectric permittivity of the silicone matrix (up to 18 times), contemporarily maintaining a low elastic modulus (maximum 150 kPa), is investigated. The different compositions reported are compared in order to highlight which one gives the most interesting performance with a minimum content of filler (maximum tested content of filler was 15 vol%) in a way that the good characteristics of the silicone matrix are preserved, and costs limited. Practical considerations and comments about breakdown strengths and elastic energy densities of the obtained materials are reported.
机译:介电弹性体致动器代表了基于聚合物的电力机械转导的新兴技术。由于其良好的机械和电气性能,实际上,确保大规模的菌株和相对较高的击穿强度,这种材料特别适合致动。已经开发出扩展和收缩设备的不同配置,但许多是该领域的未开发潜在的潜力。为了进一步开发介电弹性体技术,应该完成在减小驱动电压的方向上前进的步骤。通过参考本领域的当前状态主题,本文描述了通过添加无机和有机填料(例如陶瓷铁电和炭黑粉末,碳纳米管,缀合)制备的不同弹性体致动器的电介质,机械和机电性能(如陶瓷铁电和炭黑粉末,碳纳米管,缀合聚合物)到商用软硅橡胶,易于制造,非常便宜。研究了提高硅氧烷基质的实际介电常数(最多18次),同时保持低弹性模量(最大150kPa)的可能性。将报告的不同组合物进行比较,以突出哪一个给出具有最小填料含量的最有趣的性能(填料的最大测试含量为15体积%),以使硅氧烷基质的良好特性保持和成本有限的。报道了关于所得材料的击穿强度和弹性能量密度的实践考虑和评论。

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