首页> 外文期刊>Proceedings of the institution of mechanical engineers >Numerical and experimental investigation on nonlinear dynamic behavior of satellite antenna reflector mechanism considering geometrical nonlinear effect and laminated composite material
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Numerical and experimental investigation on nonlinear dynamic behavior of satellite antenna reflector mechanism considering geometrical nonlinear effect and laminated composite material

机译:考虑几何非线性效应和层压复合材料的卫星天线反射机构非线性动力学行为的数值和实验研究

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摘要

A nonlinear dynamic modeling method for a satellite antenna system composed of laminated composite shell reflector undergoing large rotation considering its geometrically nonlinear effect and material nonlinearity effect is proposed in this paper. The present model treats flexible appendages of a spacecraft mechanism as laminated composite material and takes into account the coupling relations between nonlinear constitutive relation of laminated material characteristics and large-angle maneuver. Then, the corresponding efficient formulations for laminated paraboloidal reflector based on higher order shear deformation theory and Hamilton's principle are developed to capture the correct dynamic response. Furthermore, the experiment for evaluating the dynamic behavior of laminated composite reflector is conducted; the vibration of the laminated composite material is smaller than that of isotropic material. Numerical results are in good agreement with those obtained from experiment to validate the correctness of the present modeling formulation. Finally, numerical simulations demonstrate that nonlinear stiffness terms and elastic force resulting from with different curvature and different laying angle have significant effect on the dynamic characteristics. The larger curvature of the reflector and the larger laying angle of the laminated composite material will induce the larger deformation of the reflector. The conclusion has important theoretical value and practical significance for the study of controlling the pointing behavior of satellite antennas.
机译:一种非线性动力学建模方法,其卫星天线系统,其考虑其几何非线性效应和材料非线性效应的大旋转。本模型将航天器机构的柔性附接结果视为层压复合材料,并考虑了层压材料特性和大角度机动的非线性本构体关系之间的耦合关系。然后,开发了基于高阶剪切变形理论和汉密尔顿原则的相应高效的层压抛物线反射器的配方,以捕获正确的动态响应。此外,进行了评估层压复合反射器的动态行为的实验;层压复合材料的振动小于各向同性材料的振动。数值结果与从实验中获得的人一致,以验证本建模配方的正确性。最后,数值模拟表明,由于不同曲率和不同铺设角度而导致的非线性刚度术语和弹性力对动态特性具有显着影响。反射器的较大曲率和层叠复合材料的较大铺设角将引起反射器的较大变形。结论对控制卫星天线的指向行为进行了重要的理论价值和实践意义。

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