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On-ground testing of the role of adhesion in the LISA-Pathfinder test mass injection phase

机译:附着力在LISA-Pathfinder测试批量注入阶段中的作用的地面测试

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摘要

Many space missions share the need to fly a free-falling body inside the spacecraft, as a reference for navigation and/or as a probe for the local gravitational field. When a mechanism is required to cage such an object during the launch phase, the need arises to release it to free-fall once the operational phase must be initiated in orbit. The criticality of this phase increases when the mechanical interfaces between the body and the mechanism are affected by adhesion and the actuation authority of the control system on the free-falling body is limited. Both conditions are realized in the LISA Pathfinder mission, which aims at injecting a gold-coated 2 kg cubic test mass into a nearly perfect geodesic trajectory to demonstrate the readiness of the developed technology for in-space gravity wave detection. The criticality of adhesion is widely recognized in space technology, because it can affect and jeopardize the functionality of mechanisms, when arising between moving parts. In the LISA Pathfinder case, metallic adhesion potentially plays a relevant role, mainly for two reasons. First, thanks to its properties (ductility, high surface energy) the gold coating on the proof mass easily produces cold weldings, especially in vacuum conditions. Second, the detachment of the proof mass from the releasing device occurs abruptly and a relevant influence of the separation velocity is expected on the strength of the welding. This can produce an excessive velocity of the proof mass at the retraction of the releasing device for the following capture and centring phase on behalf of the control system. A testing activity is performed to characterize the dynamic behaviour of the adhesive bonds between the proof mass and the releasing device, which can be used to predict their contribution on the residual velocity of the proof mass after in-flight release. The study of such a dynamic phenomenon sets some challenging requirements on the measurement technique, both on the instrumental and on the signal analysis sides. However, the recent improvements on the testing activities make it possible to refine the contribution of adhesion on the proof mass velocity budget at the release. In this paper we describe the recent experimental results, the developments in the measurement technique, the improvements in the repeatability of the results and the related projection to in-flight release dynamics, in comparison with the previous results.
机译:许多太空飞行任务都需要在飞船内部飞行一个自由落体,作为导航的参考和/或作为当地引力场的探测。当在发射阶段需要一种机制将此类物体固定住时,一旦必须在轨道上启动运行阶段,就需要将其释放以自由落下。当车身与机械装置之间的机械界面受到附着力的影响,并且自由落体上的控制系统的操纵权限受到限制时,该阶段的危险性就会增加。这两个条件都在LISA探路者任务中实现,该任务旨在将镀金的2 kg立方测试块注入接近理想的测地线中,以证明已开发的技术可用于空间重力波检测。粘附的重要性已在空间技术中得到广泛认可,因为它在活动部件之间产生时会影响并危及机构的功能。在LISA探路者的情况下,金属粘附可能起着重要的作用,主要有两个原因。首先,由于其性能(延展性,高表面能),在质量块上的金涂层很容易产生冷焊,特别是在真空条件下。其次,检测质量突然从释放装置上脱离,并且预期分离速度对焊接强度的相关影响。在释放装置缩回时,这会代表控制系统在随后的捕获和定心阶段中产生过大的检测质量速度。进行测试活动以表征检测质量和释放装置之间的粘合力的动态行为,这可以用来预测它们在飞行中释放后对检测质量剩余速度的贡献。对这种动态现象的研究对仪器和信号分析方面的测量技术提出了一些挑战性的要求。但是,最近对测试活动的改进使得有可能在释放时改进粘附力对标准质量速度预算的贡献。在本文中,我们将介绍与以前的结果相比最新的实验结果,测量技术的发展,结果可重复性的改进以及对飞行中释放动力学的相关预测。

著录项

  • 来源
    《Advances in space research》 |2017年第10期|2572-2582|共11页
  • 作者单位

    Department of Industrial Engineering, University of Trento, Via Sommarive 9, 38123 Trento, Italy,Trento Institute of Fundamental Physics and Applications, Italian Institute of Nuclear Physics (INFN), Via Sommarive 14, 38123 Trento, Italy;

    Department of Industrial Engineering, University of Trento, Via Sommarive 9, 38123 Trento, Italy,Trento Institute of Fundamental Physics and Applications, Italian Institute of Nuclear Physics (INFN), Via Sommarive 14, 38123 Trento, Italy;

    Department of Mechanical and Aerospace Engineering, University of Florida, 231 MAE-A, Gainesville, FL 32611, USA;

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

    LISA Pathfinder; Injection into geodesic motion; Gold cold welding; Space mechanism testing; Impulse measurement;

    机译:LISA Pathfinder;大地运动注入;金冷焊接;空间机构测试;脉冲测量;

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