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Utilizing tension reduction in a dielectric elastomer actuator to produce compression for physiological application

机译:利用介电弹性体执行器中的张力降低来产生用于生理应用的压缩

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摘要

A common prophylaxis against peripheral vascular diseases utilizes pneumatic active compression systems. Although effective, traditional active compression systems require the use of an air compressor and pump and are, therefore, ill-suited for ambulatory use. The current work introduces a novel approach to developing an ambulatory smart material-based active compression system. The actuation system is composed of a belt-like mechanism connected in conjunction with a multi-layered dielectric elastomer actuator. The belt mechanism allows compression to be applied directly with voltage application. By doing so, the proposed design limits the period during which the actuator should be charged and improves system power efficiency and lifetime. An analytical model which defines the pre-compression exerted by the actuation system before voltage application is presented and validated experimentally. Experimental results for the belt mechanism characterization, dielectric elastomer actuator characterization and actuation system testing are presented. Through experimental testing, it is shown that the initial pre-compression can be fine-tuned by varying the parameters of the system as defined in the analytical model, and that the pre-compression has little effect on the consequent actuation output amplitudes.
机译:预防周围血管疾病的常用方法是使用气动主动压缩系统。尽管有效,但传统的主动压缩系统需要使用空气压缩机和泵,因此不适合用于非机动车。当前的工作介绍了一种新颖的方法来开发基于智能材料的移动式主动压缩系统。该致动系统由与多层介电弹性体致动器连接的带状机构组成。皮带机构允许通过施加电压直接施加压缩。这样,提出的设计限制了执行器应充电的时间,并提高了系统的电源效率和使用寿命。提出并定义了一个分析模型,该模型定义了施加电压之前驱动系统施加的预压缩。给出了皮带机理表征,介电弹性体致动器表征和致动系统测试的实验结果。通过实验测试表明,可以通过改变分析模型中定义的系统参数来微调初始预压缩,并且预压缩对随后的致动输出幅度几乎没有影响。

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