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Effect of Load on the Thermal Expansion Behavior of T700 Carbon Fiber Bundles

机译:载荷对T700碳纤维束热膨胀行为的影响

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摘要

T700 carbon fiber bundles (CFBs) are the primary material used for manufacturing cable-net in a deployable antenna. In this paper, the relationships between the coefficient of thermal expansion (CTE) of T700 CFBs and the experimental load were investigated. The microstructure of T700 CFBs was analyzed with Raman spectra and XRD before and after the thermomechanical test. The measured results indicated that the T700 CFBs that were parallel to the axis had negative expansion characteristics when in a temperature range of −150–+150 °C. The thermal strain that occurred during the heating and the cooling thermal cycles had an unclosed curve that served as the loop. When the thermal cycles were the same, the position of the strain loop and the length of the sample exhibited regular change. The average of the CTEs decreased as the experimental load increased. The microstructural analysis suggested that the degree of structural order and the degree of orientation along the fiber axis improved with the experimental load increase. The change of microstructure parameters could be the primary cause of the negative CTE’s variation within the T700 CFBs. The experimental results provide some guidelines for improving the cable-net material selection.
机译:T700碳纤维束(CFB)是用于制造可展开天线中的电缆网的主要材料。本文研究了T700 CFB的热膨胀系数(CTE)与实验负载之间的关系。 T700 CFB的微观结构在热力学测试之前和之后均通过拉曼光谱和XRD分析。测量结果表明,平行于轴的T700 CFB在-150– + 150°C的温度范围内具有负膨胀特性。在加热和冷却热循环过程中发生的热应变具有不闭合的曲线,该曲线充当回路。当热循环相同时,应变环的位置和样品的长度呈现规律性变化。随着实验负荷的增加,平均CTE降低。显微结构分析表明,随着实验载荷的增加,结构序度和沿纤维轴的取向度提高。微观结构参数的变化可能是T700 CFB内部CTE负变化的主要原因。实验结果为改善电缆网材料的选择提供了一些指导。

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