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Force-Limited Vibration Complex Two-Degree- of-Freedom System Method

机译:力有限振动复合二自由度系统方法

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Force-limited vibration testing developed at the Jet Propulsion Laboratory offers many opportunities to decrease the overtesting problem associated with traditional vibration testing. Among the force-limited vibration methods, the complex two-degree-of-freedom system (TDOFS) appears to be the most complete and versatile model that gives reasonably conservative force limits and does not require extrapolation of interface force data for similar mounting structures and test articles. However, there are some limitations to the complex TDOFS model. The model is well adapted for nicely separated modes, but issues regarding the closely space modes have not been fully addressed in the literature. Also, the complex TDOFS model is based on free boundary conditions for the mounting structure, which appear to be natural for many cases such as spacecraft mounted on a launch vehicle. However, this is not necessarily true for some other cases such as an electronic component mounted on a spacecraft antenna, which requires fixed boundary conditions. Greater insights into the complex TDOFS method are given, and methodologies to overcome its limitations are proposed. It is shown that a simple approach can be used to assure conservative estimate of the force limits in situations regarding closely spaced modes. It is also demonstrated that, although the complex TDOFS method is not perfectly adapted to fixed boundary conditions of the mounting structure, given certain precautions, it still provides good estimates of the force limits.
机译:由喷气推进实验室开发的受力限制的振动测试为减少与传统振动测试相关的过测试问题提供了许多机会。在受力限制的振动方法中,复杂的两自由度系统(TDOFS)似乎是最完整,最通用的模型,它给出了合理的保守力极限,并且不需要外推类似安装结构的界面力数据。测试文章。但是,复杂的TDOFS模型有一些限制。该模型非常适合于很好的分离模式,但是有关紧密空间模式的问题尚未在文献中得到充分解决。同样,复杂的TDOFS模型基于安装结构的自由边界条件,在许多情况下,例如安装在运载火箭上的航天器,这似乎是很自然的。但是,对于某些其他情况,例如安装在航天器天线上的电子组件,这需要固定的边界条件,不一定是正确的。给出了对复杂TDOFS方法的更深入的了解,并提出了克服其局限性的方法。结果表明,可以采用一种简单的方法来确保在紧密间隔模式下保守估计力极限。还证明了,尽管复杂的TDOFS方法不能完美地适应安装结构的固定边界条件,但在采取某些预防措施的情况下,它仍然可以很好地估算力的极限。

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