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Constitutive relation and electromechanical stability of compressible dielectric elastomer

机译:可压缩介电弹性体的本构关系和机电稳定性

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The constitutive relation and electromechanical stability of Varga-Blatz-Ko-type compressible isotropic dielectric elastomer is investigated in this paper. Free-energy in any form, which consists of elastic strain energy and electric energy, can be applied to analyse the electromechanical stability of dielectric elastomer. The constitutive relation and stability is analyzed by applying a new kind of free energy model, which couples elastic strain energy, composed of Varga model as the volume conservative energy and Blatz-Ko model as the volume non-conservative energy, and electric field energy with constant permittivity. The ratio between principal planar stretches m(t_0) (λ_2 = m(t_0)λ_1 ), the ratio between thickness direction stretch and length direction stretch n(t_0) (λ_3= n(t_0)λ_1), and power exponent of the stretch k(t_0) are defined to characterize the mechanical loading process and compressible behavior of dielectric elastomer. Along with the increase of material parameters m(t_0), n(t_0),k(t_0) and poison ratiov, the nominal electric field peak is higher. This indicates that the dielectric elastomer electromechanical system is more stable. Inversely, with the increase of the material parameter a , the nominal electric field peak, critical area strain and the critical thickness strain increase, coupling system is more stable.
机译:研究了Varga-Blatz-Ko型可压缩各向同性介电弹性体的本构关系和机电稳定性。由弹性应变能和电能组成的任何形式的自由能均可用于分析介电弹性体的机电稳定性。通过应用一种新型的自由能模型来分析本构关系和稳定性,该模型耦合弹性应变能,由Varga模型(作为体积保守能量)和Blatz-Ko模型(作为体积非保守能量)以及电场能量组成。介电常数恒定。主平面拉伸的比例m(t_0)(λ_2= m(t_0)λ_1),厚度方向的拉伸比例与长度方向的拉伸比例n(t_0)(λ_3= n(t_0)λ_1)以及拉伸的幂指数定义k(t_0)以表征介电弹性体的机械加载过程和可压缩行为。随着材料参数m(t_0),n(t_0),k(t_0)和毒物比v的增加,标称电场峰值也更高。这表明介电弹性体机电系统更稳定。相反,随着材料参数a的增加,标称电场峰值,临界面积应变和临界厚度应变增加,耦合系统更加稳定。

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