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Dynamics of soft mechanical systems actuated by dielectric elastomers

机译:介电弹性体致动软机械系统的动态

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摘要

A computation methodology for studying the dynamics of flexible mechanical systems containing soft actuators of dielectric elastomers is originally proposed. The absolute nodal coordinate formulation (ANCF) is used to describe the rigid-body motions and large deformations of the flexible mechanical systems. A new viscoelastic solid element of ANCF is proposed for meshing the components of dielectric elastomers. The constitutive model of dielectric elastomers is deduced from the Helmholtz free energy according to thermodynamics, and embedded into the ANCF solid element. The proposed solid element is an 8-node hexahedra element with each node represented by 12 spatial nodal coordinates and 4 electrical nodal coordinates. Both the displacement and electric fields of the continuum system are discretized and described by the proposed element with high-order functions of interpolation. The element internal forces and their Jacobians are derived. Then dynamic equations of flexible multibody systems containing components of dielectric elastomers are established and solved numerically via the generalized-alpha algorithm of time integration. Finally, numerical examples are given to validate the proposed element and the computation methodology. The experimental test is also performed, and the test results are compared with the numerical results to further validate the proposed methodology.
机译:最初提出了一种用于研究含有介电弹性体软致动器的柔性机械系统动态的计算方法。绝对节点坐标配方(ANCF)用于描述刚体运动和柔性机械系统的大变形。提出了一种新的ANCF的粘弹性固体元件,用于啮合介电弹性体的组分。根据热力学从Helmholtz自由能推导出介电弹性体的本构模型,并嵌入到ANCF固体元件中。所提出的固体元素是8节点六升降型元件,其每个节点由12个空间节点坐标和4个电节节坐标表示。连续系统的位移和电场都是由所提出的元件离散化和描述的,具有高级联的插值。元素内部力及其雅各比人是衍生的。然后通过α的时间集成的广义 - α算法在数值上建立并解决了包含介电弹性体组分的柔性多体系的动态方程。最后,给出了数值例子来验证所提出的元素和计算方法。还进行了实验测试,并将测试结果与数值结果进行比较,以进一步验证提出的方法。

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