基于嵌入式光纤光栅传感器的低轨道环境暴露监测潜力研究

Yurim Park, Hyunseok Kwon, P. Shrestha, Chun-Gon Kim
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引用次数: 0

摘要

复合材料比包括金属在内的传统材料具有许多优点,特别是在空间应用方面。然而,复合材料的失效模式复杂且难以识别,各种裂纹和分层主要难以视觉检测。在这方面,需要一种有效的方法来监测暴露在危险空间环境中的复合材料和结构的完整性,以确保复合材料在航空航天应用中的长期可靠性。由于光纤光栅传感器对各种环境具有抗扰性,因此在空间应用中具有优势。在本研究中,使用FBG传感器研究了CFRP在LEO环境中的暴露监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of LEO environment exposure monitoring potential using embedded FBG sensors
Composite materials provide many advantages over conventional materials including metals, especially for space applications. However, composites have failure modes that are complex and difficult to identify, and various cracks and delamination are predominantly difficult to detect visually. In this regard, an effective method of monitoring the integrity of composite materials and structures exposed to hazardous space environments is necessary to ensure the long-term reliability of composite materials in aerospace applications. FBG sensors are advantageous for space applications due to their immunity to various environments. In this study, FBG sensors were used to investigate LEO environment exposure monitoring of CFRP.
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