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Numerical Analysis of Helical Dielectric Elastomer Actuator

机译:螺旋介电弹性体作动器的数值分析

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Dielectric elastomer actuators (DEA) are known for its capability of experiencing extreme strains, as it can expand and contract based on specific actuation voltage applied. On contrary, helical DEA (HDEA) with its unique configuration does not only provide the contractile and extendable capabilities, but also can aid in attaining results for bending and torsion. The concept of HDEA embraces many new techniques and can be applied in multiple disciplines. Thus, this paper focuses on the simulation of HDEA with helical compliant electrodes that is a major factor prior to its application. The attributes of the material used to build the structure plays a vital role in the behavior of the system. For numerical analysis of HDEA, the material characteristics are input into a commercial grade software, and then the appropriate analysis is performed to retrieve its outcome. Applying the material characteristics into numerical analysis modeling, the functionality of HDEA for various activations can be achieved, which is used to test and comply with the fabricated final product.
机译:介电弹性体致动器(DEA)以承受极端应变的能力而著称,因为它可以根据施加的特定致动电压而膨胀和收缩。相反,具有独特构造的螺旋DEA(HDEA)不仅提供了可伸缩的功能,而且还可以帮助获得弯曲和扭转的结果。 HDEA的概念包含许多新技术,可以应用于多种学科。因此,本文着重于使用螺旋顺应电极对HDEA进行仿真,这是其应用之前的主要因素。用于构建结构的材料的属性在系统的行为中起着至关重要的作用。对于HDEA的数值分析,将材料特性输入到商业级软件中,然后进行适当的分析以检索其结果。将材料特性应用于数值分析建模中,可以实现HDEA用于各种激活的功能,该功能可用于测试并符合制造的最终产品。

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