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MODELING OF FOUR-BAR TENSEGRITY-MEMBRANE SYSTEMS

机译:四杆张拉膜系统的建模

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摘要

Tensegrity-membrane systems are lightweight and deployable structures that can be utilized in space applications such as solar sails and radar antennas. This work focuses on four-bar tensegrity-membrane systems. An energy-based method is used to determine the static configurations of four-bar tensegrity-membrane systems, and the explicit equilibrium conditions for the symmetric systems are derived. The system dynamics is studied based on the Lagrange's method by appropriately choosing a floating reference frame for the attached membrane. The stress distribution in the membrane due to corner displacements and the free vibration modes of the membrane are determined by a polynomial series method, and are compared with the finite element results calculated by ANSYS. The linear and nonlinear simulation results of the system are presented and compared. The difference between linear and nonlinear simulation results is illustrated and discussed.
机译:张力膜系统是轻巧且可展开的结构,可用于太空应用,例如太阳帆和雷达天线。这项工作着重于四杆张紧膜系统。采用基于能量的方法确定四杆张紧膜系统的静态构型,并推导了对称系统的显式平衡条件。基于拉格朗日方法,通过为附着的膜选择合适的浮动参考系来研究系统动力学。通过多项式级数法确定由于角位移和膜的自由振动模式而引起的膜中应力分布,并与ANSYS计算的有限元结果进行比较。给出并比较了系统的线性和非线性仿真结果。说明和讨论了线性和非线性仿真结果之间的差异。

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