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Energy conversion analysis and performance research on a cone-type dielectric electroactive polymer generator

机译:锥型介电电活性聚合物发生器的能量转换分析和性能研究

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摘要

As a type of intelligent material, dielectric electroactive polymer (DEAP) has shown considerable promise for energy harvesting purposes as well as in actuator mode. Theoretical analysis on DEAP generators is important to guide the optimization and design of a DEAP generator. In this paper, firstly, four working phases of a DEAP generator and energy conversion between mechanical energy input and electrical energy generated have been studied. Then, the model of a cone-type DEAP generator is established. On the basis of that, some key issues of a DEAP generator, such as capacitance, force-displacement relationship, distribution of stress and stretch ratio in the membrane, have been achieved by solving the differential and algebraic equations. It is demonstrated that the stretch displacement of a DEAP generator and bias voltage are the main factors influencing the amount of electrical energy generated and the efficiency of energy conversion. In addition, the failure rule of a DEAP generator has also been discussed. Finally, the proposed model is proved by experimental results, which shows the model is reliable for analyzing the cone-type DEAP generator.
机译:作为一种智能材料,介电电活性聚合物(DEAP)在能量收集目的以及执行器模式下都显示出巨大的希望。对DEAP发生器的理论分析对于指导DEAP发生器的优化和设计很重要。本文首先研究了DEAP发生器的四个工作阶段以及机械能输入和产生的电能之间的能量转换。然后,建立了锥型DEAP发生器的模型。在此基础上,通过求解微分方程和代数方程,解决了DEAP发生器的一些关键问题,例如电容,力-位移关系,应力分布和膜中的拉伸比。结果表明,DEAP发生器的拉伸位移和偏置电压是影响产生的电能量和能量转换效率的主要因素。此外,还讨论了DEAP生成器的故障规则。最后,通过实验结果验证了所提模型的有效性,表明该模型对于分析锥形DEAP发生器是可靠的。

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