首页> 外文期刊>Journal of Materials Science >The fabrication of dielectric elastomers from silicone rubber and barium titanate: employing equi-biaxial pre-stretch to achieve large deformations
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The fabrication of dielectric elastomers from silicone rubber and barium titanate: employing equi-biaxial pre-stretch to achieve large deformations

机译:用硅橡胶​​和钛酸钡制造介电弹性体:采用等双轴预拉伸实现大变形

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摘要

Barium titanate (BaTiO3, BT), which has a high dielectric constant was used as the filler in silicone rubber (SR) based-DE composites. The BT was added in order to achieve higher voltage-induced strains and decrease the magnitude of the applied electric fields. The morphology of SR/BT composites was observed using a scanning electron microscope. The mechanical property of the SR/BT composites, which was characterized by an equi-biaxial static test, was obtained using a bubble inflation test system. Significantly, an optimum equi-biaxial pre-stretch ratio was determined using this method in order to enhance the actuated strain achieved under an applied electric field. Concurrently, the measurements of dielectric constant and loss tangent were carried out using dielectric spectroscopy. Using the pre-stretch ratio obtained from equi-biaxial testing, the influence of BT content on the electromechanical properties of SR-based DEs was investigated. The results showed that the BT exhibited excellent dispersibility in SR matrices, but agglomerates appeared in the composites with higher filler content. An increase of dielectric constant was obtained by increasing the BT content in SR with low dielectric loss tangents below 0.035 at 0.1 Hz for all films. Also, the composite of SR/BT exhibited hyperelasticity with the minimum secant modulus at the optimised stretch ratio of 1.6. Under this specified pre-stretch ratio, a maximum actuated area strain of approximately 57 % was achieved for the film having a filler loading of 20 wt% BT. This strain corresponded to a relatively low dielectric strength of around 46 V/µm. For all the DE composites tested, a maximum electromechanical energy density (e) of 0.042 MJ/m3 and an electromechanical coupling efficiency (K 2) of 0.59 were obtained for DEs with 30 and 20 wt% BT, respectively.
机译:具有高介电常数的钛酸钡(BaTiO3,BT)被用作硅橡胶(SR)-DE复合材料的填料。添加BT是为了获得更高的电压感应应变并减小施加的电场强度。使用扫描电子显微镜观察SR / BT复合材料的形态。 SR / BT复合材料的机械性能以等双轴静态测试为特征,是使用气泡膨胀测试系统获得的。重要的是,使用这种方法确定了最佳的等双轴预拉伸比,以增强在施加电场下获得的致动应变。同时,介电常数和损耗角正切的测量是使用介电光谱法进行的。使用从等双轴试验获得的预拉伸比,研究了BT含量对SR基DEs机电性能的影响。结果表明,BT在SR基质中表现出优异的分散性,但在填料含量较高的复合材料中却出现团聚。通过增加SR中的BT含量(所有薄膜在0.1Hz处的介电损耗正切值低于0.035时)可以增加介电常数。而且,SR / BT的复合材料在优化的拉伸比为1.6时显示出最小的割线模量的超弹性。在此指定的预拉伸比下,填料填充量为20wt%BT的薄膜可获得约57%的最大激活面积应变。这种应变对应的相对较低的介电强度约为46V /μm。对于所有测试的DE复合材料,对于含30wt%和20wt%BT的DE分别获得0.042 MJ / m3的最大机电能量密度(e)和0.59的机电耦合效率(K 2)。

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  • 来源
    《Journal of Materials Science》 |2015年第24期|7930-7938|共9页
  • 作者单位

    Centre for Elastomer Research (CER) Focas Research Institute Dublin Institute of Technology">(1);

    Applied Electrochemistry Group (AEG) Focas Research Institute Dublin Institute of Technology">(2);

    Department of Mechanical Engineering Dublin Institute of Technology">(3);

    Centre for Elastomer Research (CER) Focas Research Institute Dublin Institute of Technology">(1);

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