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AFM analysis of the Surface of Highly Drawn Ultra High Molecular Weight Polyethylene Fibers

机译:高度绘制超高分子量聚乙烯纤维表面的AFM分析

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Large epitaxial structures on the surface of ultra-drawn, ultra high molecular weight polyethylene (UHMWPE) fibers are observed using atomic force microscopy (AFM). These epitaxial structures are prevalent, oriented perpendicular to the fiber axis with a nominal thickness of 10-25 nm in the direction of the fiber axis and a width of 100-200 nm. The observed surface morphology is different from the traditional shish-kebab morphology in scale, bridging tens of microfibrils. A series of annealing experiments of single filaments over a temperature range of interest for the processing of ballistic laminates ( 110°C-130°C), show significant thickening of these surface features consistent with melting and recrystallization of thin lamella crystals. AFM scans performed before and after annealing reveal considerable reorganization, and in some instances, the appearance of new epitaxial features in areas where none had existed previously. These results suggest that these larger scale epitaxial structures form as a result of melting and recrystallization of less stable crystalline structures and/or surface melting of more stable crystals. A discussion of the implications of these observations with respect to both fiber and composite processing and mechanical properties will be presented.
机译:使用原子力显微镜(AFM)观察超出超绘制的超绘制的超高分子量聚乙烯(UHMWPE)纤维的大外延结构。这些外延结构普遍,垂直于纤维轴线定向,纤维轴方向具有10-25nm的标称厚度,宽度为100-200nm。观察到的表面形态与规模的传统Shish-Kebab形态不同,桥接数十微纤维。在加工弹道层压板(110℃-130℃)的温度范围内单根长丝的一系列退火实验(110℃-130℃)显示出这些表面特征的显着增厚,这与薄薄片晶体的熔化和重结晶一致。退火之前和之后的AFM扫描显示了相当大的重组,并且在某些情况下,在没有人之前存在的区域中的新外延特征的外观。这些结果表明,这些较大刻度外延结构的形成形式的熔融和再结晶的晶体结构较低的晶体结构和/或表面熔化更稳定的晶体。将介绍对这些观察结果对纤维和复合处理和机械性能的影响的讨论。

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