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首页> 外文期刊>Materials Evaluation >Temperature Dependence of Dynamic Modulus and Damping in Composites and Optical Telecommunication Cables Tested by the Vibration Resonance Technique
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Temperature Dependence of Dynamic Modulus and Damping in Composites and Optical Telecommunication Cables Tested by the Vibration Resonance Technique

机译:用振动共振技术测试复合材料和电信电缆中动态模量和阻尼的温度依赖性

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摘要

This paper applies the vibration resonance technique to test the dynamic modulus and damping properties of pultruded composite rods and optical fiber cables at elevated temperatures. The measurements were conducted using the specimens in their commercial forms. The damping factor and flexural modulus of an optical cable at elevated temperatures that are derived theoretically from the properties of its constituents are compared with the experimental validation. The contributions of the constituents to the stiffness and damping factor of cable structures are analyzed. Finally, the resonance technique and conventional dynamic mechanical thermal analysis for testing dynamic properties of fiber composites are compared and discussed. The work demonstrated that the resonance technique provides a good nondestructive solution to test stiff composites and multicomponent cables.
机译:本文应用振动共振技术来测试拉挤复合材料棒和光缆在高温下的动态模量和阻尼特性。使用商业形式的样品进行测量。从理论上根据其成分的特性得出的高温光缆的阻尼因子和弯曲模量与实验验证进行了比较。分析了成分对电缆结构刚度和阻尼因子的贡献。最后,比较和讨论了用于测试纤维复合材料动态性能的共振技术和常规动态机械热分析。这项工作表明,共振技术为测试硬质复合材料和多组分电缆提供了良好的无损解决方案。

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