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Influence of thin-film device with curvature on natural frequency of rectangle membrane under uniaxial tension

机译:单轴张力下矩形膜自固定频率曲率的影响

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摘要

A solar power sail demonstrator "IKAROS" demonstrated solar sailing technology in 2010. The membrane of the spinning solar sail IKAROS is estimated to be deformed toward the Sun. The deformation was kept even under low spin-rate. Previous studies suggest that curvature of thin-film solar cells on the membrane increases the out-of-plane stiffness by finite element analysis.Shape,out-of-plane stiffness, and natural frequency of membranes have to be predicted for solar sails with thin-film devices, such as thin-film solar cells, dust counters, and reflectivity control devices in order to reduce the margins of sail size and propellant mass against disturbance solar pressure torque acting on the membrane. In this paper, the effect of a curved thin-film device on the natural frequency of a rectangle membrane under uniaxial tension was investigated. Three types of membranes were evaluated: a membrane with a curved thin-film device, a membrane with a flat thin-film device, and a plane membrane. Geometric nonlinear finite element analysis and eigenvalue analysis were conducted to investigate the natural frequencies under varying tension. The simulations were verified by vibration experiments. It was found that under low tension, the natural frequency of the membrane with the curved thin-film device is significantly higher than that of the others and that under high tension, the natural frequency of the membrane with the thin-film device is slightly lower than that of the plane membrane. In addition, parametric analysis on the curvature of the thin-film device shows that natural frequency at low tension is sensitive to the curvature. The eigenvalue analysis of a whole solar sail with the curved thin-film devices also suggests that the curvature remarkably affects the vibration modes. In conclusion, curved thin-film devices have a significant impact on the out-of-plane stiffness of a membrane under low tension.
机译:太阳能发电演示“ikaros”于2010年展示了太阳帆船技术。旋转太阳能帆盖罗斯的膜估计朝向太阳变形。即使在低旋转速率下也保持变形。以前的研究表明,膜上的薄膜太阳能电池曲率通过有限元分析来增加平面外刚度。Shape,外平面刚度和膜的固有频率必须预测太阳帆薄-Film器件,例如薄膜太阳能电池,灰尘计数器和反射率控制装置,以减少帆尺寸和推进剂质量的抗扰度太阳能压力扭矩作用在膜上。本文研究了弯曲薄膜装置对单轴张力下矩形膜自然频率的影响。评价三种类型的膜:具有弯曲薄膜装置的膜,具有扁平薄膜装置的膜和平面膜。进行几何非线性有限元分析和特征值分析,以研究不同张力下的固有频率。通过振动实验验证模拟。发现,在低张力下,具有弯曲薄膜装置的膜的固有频率显着高于其他膜,并且在高张力下,薄膜装置的膜的固有频率略低比平面膜的。另外,对薄膜装置的曲率的参数分析表明,低张力下的固有频率对曲率敏感。具有弯曲薄膜器件的整个太阳能帆的特征值分析还表明曲率显着影响振动模式。总之,弯曲的薄膜装置对低张力下膜的外平面刚度产生显着影响。

著录项

  • 来源
    《Astrodynamics》 |2019年第3期|257-272|共16页
  • 作者单位

    Institute of Space and Astronautical Science Japan Aerospace Exploration Agency Sagamihara 252-5210 Japan;

    Institute of Space and Astronautical Science Japan Aerospace Exploration Agency Sagamihara 252-5210 Japan;

    Institute of Space and Astronautical Science Japan Aerospace Exploration Agency Sagamihara 252-5210 Japan;

    Institute of Space and Astronautical Science Japan Aerospace Exploration Agency Sagamihara 252-5210 Japan;

    Department of Mechanical and Aerospace Engineering Tottori University Tottori 680-8552 Japan;

    Department of Mechanical Engineering School of Engineering Tokyo Institute of Technology Tokyo 152-8552 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    membrane structures; thin-film device; vibration; eigenvalue analysis; experiment;

    机译:膜结构;薄膜装置;振动;特征值分析;实验;

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