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Electrostriction of a Polyurethane Elastomer-Based Polyester

机译:聚氨酯弹性体基聚酯的电致伸缩

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This paper is dealing with the electromechanical properties of a synthesized polyurethane elastomer film-based polyester. On the basis of the electrostatic-field induced strain, dielectric, and stress-strain measurements carried out under ambient conditions, the electromechanical parameters such as thickness strain, apparent electrostrictive coefficient, effective pressure, mechanical energy density, and Maxwell-effect contribution, were determined. Thickness strain versus the static electric field showed a quadratic dependence up to about 6.3 MV/m, which is consistent with an electrostrictive response. The maximum induced strain of 7percent obtained at 16 MV/m is higher than those reported in the literature on unprestrained polyurethane film with noncompliant electrodes. Remarkable apparent electrostrictive coefficient (approx7.75 10~(-16) m~(2)/V~(2)) and response time (600 ms) were found. Under the actual experimental conditions (rigid electrodes and maximum electrostatic field of 16 MV/m), the effective compressive pressure (0.9 MPa) and mechanical energy density (0.032 J/cm~(3)) values are quite noticeable. A small Maxwell-effect contribution of only 0.32percent was found. The electromechanical parameters of this polyurethane elastomer indicate that this material is potentially useful for practical actuators and sensors.
机译:本文研究的是合成聚氨酯弹性体薄膜基聚酯的机电性能。根据在环境条件下进行的静电场感应应变,电介质和应力应变测量,得出了机电参数,例如厚度应变,表观电致伸缩系数,有效压力,机械能密度和麦克斯韦效应贡献决心。厚度应变与静电场的关系显示出高达6.3 MV / m的二次依赖性,这与电致伸缩响应一致。在16 MV / m时获得的最大诱导应变为7%,高于文献中报道的带有非顺应性电极的未预应力聚氨酯薄膜的最大应变。发现显着的表观电致伸缩系数(约7.75 10〜(-16)m〜(2)/ V〜(2))和响应时间(600 ms)。在实际实验条件下(刚性电极和最大静电场为16 MV / m),有效压缩压力(0.9 MPa)和机械能密度(0.032 J / cm〜(3))值非常引人注目。发现麦克斯韦效应的贡献很小,仅为0.32%。该聚氨酯弹性体的机电参数表明该材料可能对实际的执行器和传感器有用。

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