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Experimental Validation of Fly-Wheel Passive Launch and On-Orbit Vibration Isolation System by Using a Superelastic SMA Mesh Washer Isolator

机译:飞轮被动发射和在轨振动隔离系统的超弹性SMA网格隔离器实验验证

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摘要

On-board appendages with mechanical moving parts for satellites produce undesirable micro-jitters during their on-orbit operation. These micro-jitters may seriously affect the image quality fromhigh-resolution observation satellites. A new application form of a passive vibration isolation system was proposed and investigated using a pseudoelastic SMA mesh washer. This system guarantees vibration isolation performance in a launch environment while effectively isolating the micro-disturbances from the on-orbit operation of jitter source. The main feature of the isolator proposed in this study is the use of a ring-type mesh washer as the main axis to support the micro-jitter source. This feature contrasts with conventional applications of the mesh washers where vibration damping is effective only in the thickness direction of the mesh washer. In this study, the basic characteristics of the SMA mesh washer isolator in each axis were measured in static tests. The effectiveness of the design for the new application form of the SMA mesh washer proposed in this study was demonstrated through both launch environment vibration test at qualification level and micro-jitter measurement test which corresponds to on-orbit condition.
机译:带有机械运动部件的卫星附属设备在轨道运行期间会产生不良的微抖动。这些微抖动可能会严重影响高分辨率观测卫星的图像质量。提出了一种新型的被动隔振系统的应用形式,并利用伪弹性SMA网状垫圈进行了研究。该系统保证了发射环境中的振动隔离性能,同时有效地将微扰动与抖动源的在轨操作隔离开来。本研究中提出的隔离器的主要特征是使用环形网状垫圈作为主轴来支持微抖动源。该特征与网状垫圈的常规应用形成对比,在传统应用中,减振仅在网状垫圈的厚度方向有效。在这项研究中,在静态测试中测量了每个方向上的SMA网格垫圈隔离器的基本特性。通过在合格级别的发射环境振动测试和与在轨情况相对应的微抖动测量测试,证明了本研究中提出的SMA网状洗衣机新应用形式的设计有效性。

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  • 来源
    《International journal of aerospace engineering》 |2017年第2期|5496053.1-5496053.16|共16页
  • 作者单位

    Chosun Univ, Dept Aerosp Engn, Space Technol Synth Lab, 375 Seosuk Dong, Gwangju 501759, South Korea;

    Hanwha Syst, Mech Design Team, 304 Cheoin Gu, Yongin 449886, South Korea;

    Chosun Univ, Dept Aerosp Engn, Space Technol Synth Lab, 375 Seosuk Dong, Gwangju 501759, South Korea;

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  • 入库时间 2022-08-18 00:05:37

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