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首页> 外文期刊>Journal of Applied Polymer Science >Effect of temperature on the performance of laterally constrained dielectric elastomer actuators with failure modes
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Effect of temperature on the performance of laterally constrained dielectric elastomer actuators with failure modes

机译:温度对失效模式的横向受限介电弹性体致动器性能的影响

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This article analytically investigates the temperature influence on the performance of laterally constrained dielectric elastomer actuators. The effects of both temperature and stretches on the permittivity are taken into consideration. The governing equations of state are established by modeling the actuator as a thermodynamic system of three degrees of freedom. Various failure modes, including electromechanical instability, electric breakdown, loss of tension, and tensile rupture are considered to restrict the operation state and to determine the region of allowable state. Numerical calculations are performed to depict the variations of some important physical quantities with generalized coordinates and to gain insight on the influence of temperature on the critical curves of failures. It is shown that the temperature has obvious effects on the operation state and the allowable region. The present results can be used for designing and optimizing an actuator, and the present approach can be extended to other kinds of dielectric elastomer actuators with complex geometries.
机译:本文分析研究了对横向受约束介电弹性体致动器性能的温度影响。考虑温度和延伸对介电常数的影响。通过将致动器建模为三个自由度的热力学系统来建立状态的控制方程。认为各种故障模式包括机电不稳定性,电击,张力损失和拉伸破裂,以限制操作状态并确定允许状态的区域。进行数值计算以描绘具有广义坐标的一些重要物理量的变化,并在对临界曲线对故障临界曲线的影响。结果表明,温度对操作状态和允许区域具有明显的影响。目前的结果可用于设计和优化致动器,并且本方法可以扩展到具有复杂几何形状的其他种类的介电弹性体致动器。

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