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首页> 外文期刊>Physics of the solid state >Strengthening of highly heat-resistant liquid-crystal polymer fibers upon heat treatment
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Strengthening of highly heat-resistant liquid-crystal polymer fibers upon heat treatment

机译:热处理后增强高耐热性液晶聚合物纤维

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摘要

Fibers of fully aromatic thermotropic liquid-crystal polymers containing mesogenic groups in the backbone are prepared on laboratory machines that make it possible to vary the conditions of jet spinning and subsequent heat treatment. The thermal and mechanical properties of the polymer fibers are investigated using differential thermal and thermomechanical analyses and strength measurements. It is found that, after spinning under optimum conditions, the strength of the fibers at room temperature is approximately equal to 1 GPa. After heat treatment under specially chosen conditions, the strength increases by a factor of two or three due to an increase in the activation energy of fracture. The role of crystallization and cross-linking in strengthening of liquid-crystal polymer fibers is elucidated.
机译:骨架中含有介晶基团的全芳族热致液晶聚合物的纤维是在实验室机器上制备的,这些机器可以改变喷射纺丝条件和随后的热处理。使用差分热和热机械分析以及强度测量来研究聚合物纤维的热和机械性能。发现在最佳条件下纺丝后,室温下纤维的强度大约等于1GPa。在特殊选择的条件下进行热处理后,由于断裂的活化能增加,强度增加了两倍或三倍。阐明了结晶和交联在增强液晶聚合物纤维中的作用。

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