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Design of micro-vibration isolation system for a remote-sensing satellite payload using viscoelastic materials

机译:使用粘弹性材料进行微隔振系统的设计,用于遥感卫星有效载荷

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When a satellite is in orbit, micro vibration generated by its actuators (such as reaction wheels, deployable mechanisms, etc.) will affect the imaging quality of the camera. Viscoelastic materials are utilized as passive isolators to reduce these micro vibrations due to their simple construction and excellent energy dissipation capacity, A ?nite element model of the entire satellite as well as the camera is constructed using the ABAQUS software and then four reaction wheels are included as the sources of micro-vibrations and their forces are added to the model. To isolate these vibrations, four square sorbothane pads are designed and added in the finite element model as viscoelastic dampers located under the camera, between the camera and satellite bus. The generalized Maxwell model is employed to describe the dynamic properties of the viscoelastic elements in the ABAQUS software. Finally, by analyzing and comparing the dynamic responses of the system with and without the viscoelastic sorbothane pads, it is realized that this isolation system can effectively reduce the reaction wheel micro-vibrations on the camera and subsequently increase the image quality.
机译:当卫星处于轨道时,由其致动器(例如反应轮,可展开机构等)产生的微振动将影响相机的成像质量。粘弹性材料用作被动隔离器,以减少由于其简单的结构和优异的能量耗散能力而减少了这些微振动,使用ABAQUS软件构建了整个卫星以及相机的整个卫星的液体模型,然后包括四个反应轮随着微振动的来源及其力被添加到模型中。为了隔离这些振动,在有限元模型中设计并添加了四个方形索甲烷垫,作为位于相机下方的粘弹性阻尼器,相机和卫星公共汽车之间。广义麦克斯韦模型用于描述ABAQUS软件中的粘弹性元件的动态特性。最后,通过分析和比较系统的动态响应和没有粘弹性索甲烷垫的动态响应,实现了该隔离系统可以有效地降低相机上的反作用轮微振动,随后增加图像质量。

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