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首页> 外文期刊>ACS Omega >Novel Polyethylene Fibers of Very High Thermal Conductivity Enabled by Amorphous Restructuring
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Novel Polyethylene Fibers of Very High Thermal Conductivity Enabled by Amorphous Restructuring

机译:通过非晶重组实现具有极高导热率的新型聚乙烯纤维

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High-thermal-conductivity polymers are very sought after for applications in various thermal management systems. Although improving crystallinity is a common way for increasing the thermal conductivity (k ) of polymers, it has very limited capacity when the crystallinity is already high. In this work, by heat-stretching a highly crystalline microfiber, a significant k enhancement is observed. More interestingly, it coincides with a reduction in crystallinity. The sample is a Spectra S-900 ultrahigh-molecular-weight polyethylene (UHMW-PE) microfiber of 92% crystallinity and high degree of orientation. The optimum stretching condition is 131.5 °C, with a strain rate of 0.0129 s~(–1) to a low strain ratio (~6.6) followed by air quenching. The k enhancement is from 21 to 51 W/(m·K), the highest value for UHMW-PE microfibers reported to date. X-ray diffraction study finds that the crystallinity reduces to 83% after stretching, whereas the crystallite size and crystallite orientation are not changed. Cryogenic thermal characterization shows a reduced level of phonon-defect scattering near 30 K. Polarization Raman spectroscopy finds enhanced alignment of amorphous chains, which could be the main reason for the k enhancement. A possible relocation of amorphous phase is also discussed and indirectly supported by a bending test.
机译:在各种热管理系统中的应用中,非常需要高导热性聚合物。尽管提高结晶度是增加聚合物的导热率(i k)的常用方法,但是当结晶度已经很高时,其容量非常有限。在这项工作中,通过热拉伸高度结晶的微纤维,可以观察到明显的k增强。更有趣的是,它与结晶度降低同时发生。样品是具有92%结晶度和高取向度的Spectra S-900超高分子量聚乙烯(UHMW-PE)超细纤维。最佳拉伸条件为131.5°C,应变率为0.0129 s〜(-1)至低应变比(〜6.6),然后进行空气淬火。 k增强从21到51 W /(m·K),这是迄今为止报道的UHMW-PE超细纤维的最高值。 X射线衍射研究发现,拉伸后结晶度降低至83%,而微晶尺寸和微晶取向不变。低温热表征显示,在30 K附近声子缺陷散射水平降低。极化拉曼光谱发现非晶链的排列增强,这可能是k增强的主要原因。还讨论了非晶相的可能重新定位,并通过弯曲试验间接支持。

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