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Flexoelectric energy harvesters utilizing controllably wrinkled micro-dielectric film

机译:利用可控皱纹的微介质膜的柔性电能收割机

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Self-powered electronic devices require energy harvesting systems to support their energy needs, but their energy harvesting efficiency seems still insufficient. In this paper, a flexoelectric energy harvester based on controllable wrinkling mechanism is theoretically proposed to enhance the energy harvesting efficiency. The dielectric film, partly bonded to a pre-stretched substrate, wrinkles after release to achieve controllable wavy shapes. A harmonic cyclic post-stretch is employed to stimulate the generation of electric charges. Meanwhile, an electrode-regrouping technique is resorted to optimize the energy harvesting efficiency. Formulation toward this problem includes both the flexoelectricity and piezoelectricity of dielectrics. Theoretical prediction indicates that electrode-regrouping technique can effectively act to relieve neutralization of the charges induced mainly by flexoelectricity and thus improve the energy harvesting efficiency of FEHs. A larger loading frequency and a lower resistance are preferred to optimize the effective power. The power density of the present FEHs is at least 1 orders of magnitude higher than that of vibrational FEHs under micro-scale. Meanwhile, with the scale shrinking below 100 nm, the energy density of the present FEHs may exceed 104W=m(3) which is generally 2-4 orders of magnitude higher than that of most vibrational energy harvesters (including electrostatic, electromagnetic, piezoelectric types). (C) 2021 Elsevier Ltd. All rights reserved.
机译:自动电子设备需要能量收集系统来支持其能量需求,但它们的能量收获效率似乎仍然不足。在本文中,理论上提出了一种基于可控皱纹机构的柔性电能收割机,以提高能量收集效率。部分粘合到预拉伸基板的介电膜,释放后皱纹以达到可控的波状形状。采用谐波循环后延伸来刺激电荷的产生。同时,采用电极重新组合技术优化能量采伐效率。对该问题的配方包括电介质的柔性电性和压电性。理论预测表明电极重新组合技术可以有效地采用主要通过柔性电性诱导的电荷中和,从而提高了FEHS的能量收集效率。更较大的负载频率和较低电阻优选优化有效功率。本发明的FEH的功率密度高于微尺度下的振动FEH的数量级。同时,随着尺度缩小到100nm以下,所示FEH的能量密度可能超过104W = M(3),其通常比大多数振动能量收割机高2-4个数量级(包括静电,电磁,压电类型)。 (c)2021 elestvier有限公司保留所有权利。

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