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Influence of temperature on the vibration properties of tensegrity structures

机译:温度对张紧结构振动特性的影响

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摘要

Vibration health monitoring methods use the sensitivity of the natural frequencies to structural damage. Natural frequencies are sensitive to damage, but are also affected by environmental conditions like temperature changes. It is important to be able to distinguish between the effects of these different factors when using the vibration properties as a monitoring tool. This paper discusses the impact of damage and environment temperature changes on the natural frequencies of tensegrity ("tensile-integrity") structures, in particular noting that component bending is a prominent vibration mode, which motivates a use of non-linear beam elements with axial-bending coupling. The model considers not only thermal expansion effects, but also the change of the elastic modulus with temperature. Changes in natural frequencies produced by environment temperature changes are shown to be similar to the ones produced by damage. The geometry of tensegrity structures, the support conditions and the materials are found to be important factors. The sensitivity of the natural frequency to temperature changes is found to be dependent on pre-stress level. (C) 2015 Elsevier Ltd. All rights reserved.
机译:振动健康监测方法利用固有频率对结构破坏的敏感性。固有频率对损坏敏感,但也受温度变化等环境条件的影响。在将振动特性用作监视工具时,能够区分这些不同因素的影响非常重要。本文讨论了破坏和环境温度变化对张力结构(“拉伸完整性”)固有频率的影响,尤其要注意的是,组件弯曲是一种突出的振动模式,这激发了非线性梁单元在轴向上的应用。 -弯曲耦合。该模型不仅考虑了热膨胀效应,还考虑了弹性模量随温度的变化。结果表明,环境温度变化所产生的自然频率变化与破坏所产生的自然频率变化相似。发现张力结构的几何形状,支撑条件和材料是重要因素。发现固有频率对温度变化的敏感性取决于预应力水平。 (C)2015 Elsevier Ltd.保留所有权利。

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