论文标题

功能分级的软电动管中的非线性响应和轴对称波传播

Nonlinear response and axisymmetric wave propagation in functionally graded soft electro-active tubes

论文作者

Wu, Bin, Destrade, Michel, Chen, Weiqiu

论文摘要

软性电动(海)材料可以在其材料特性中使用梯度设计和制造,以修改并有可能改善其服务中的机械响应。在这里,我们研究了由功能分级的海材材料制成的软圆形管中的非线性响应和轴对称波的传播,并受到几个偏置场,包括轴向前伸,内部/外部压力和透明电压。我们采用材料的能量密度函数为Mooney-Rivlin理想介电类型,材料参数沿径向方向线性变化。我们采用非线性电弹性的一般理论来明确地获得管子对所施加场的非线性响应。为了在不均匀的偏见场下研究波传播,我们制定了状态空间形式主义中运动的增量方程。我们采用近似层压板技术来得出在有限变形状态下叠加的小振幅扭转和纵向波的分析分散关系。然后,全面的数值结果说明材料梯度和偏置场对静态非线性响应以及管中的轴对称波传播具有重大影响。这项研究为设计具有改善性能的海洋执行器,调整可调海浪指导以及表征非功能性分级的管状结构的基础奠定了基础。

Soft electro-active (SEA) materials can be designed and manufactured with gradients in their material properties, to modify and potentially improve their mechanical response in service. Here, we investigate the nonlinear response of, and axisymmetric wave propagation in a soft circular tube made of a functionally graded SEA material and subject to several biasing fields, including axial pre-stretch, internal/external pressure, and through-thickness electric voltage. We take the energy density function of the material to be of the Mooney-Rivlin ideal dielectric type, with material parameters changing linearly along the radial direction. We employ the general theory of nonlinear electro-elasticity to obtain explicitly the nonlinear response of the tube to the applied fields. To study wave propagation under inhomogeneous biasing fields, we formulate the incremental equations of motion within the state-space formalism. We adopt the approximate laminate technique to derive the analytical dispersion relations for the small-amplitude torsional and longitudinal waves superimposed on a finitely deformed state. Comprehensive numerical results then illustrate that the material gradients and biasing fields have significant influences on the static nonlinear response and on the axisymmetric wave propagation in the tube. This study lays the groundwork for designing SEA actuators with improved performance, for tailoring tunable SEA waveguides, and for characterizing non-destructively functionally graded tubular structures.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源