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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Probing the internal structures of Kevlar ? fibers and their impacts on mechanical performance
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Probing the internal structures of Kevlar ? fibers and their impacts on mechanical performance

机译:探测Kevlar β纤维及其对机械性能的影响

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摘要

AbstractAdvancements in processing techniques have facilitated the development of a series of unique high-performance DuPont? Kevlar?fibers. Directly characterizing interior structures of these fibers is vital for connecting processing variations with resulting mechanical properties. Here we report detailed investigations of processing-internal structure-property relationships among four distinct classes of Kevlar?fibers (K119, K29, KM2+, and K49). We employ a novel focused ion beam (FIB) notch technique to obtain pristine interior fiber planes and measure morphology and transverse stiffness across these surfacesviamultifrequency atomic force microscopy (AFM) maps. Combining these observations with tensile tests of single fibers drawn from the same tows, we acquire remarkable insights into structural motifs that strongly correlate with measured mechanical properties. Most notably, we uncover alternating stiffness bands that are especially apparent in low-modulus, non-heat-treated fibers, revealing a unique manifestation of internal structural variations that helps explain the observed trends in material response.Graphical abstractDisplay Omitted展开▼
机译:<![CDATA [ 抽象 处理技术的进步已经促进了一系列独特的高性能杜蒙特的开发? kevlar 光纤。这些纤维的内部结构的直接表征对于连接加工变化,这对于导致的机械性能进行了至关重要。在这里,我们报告了对凯夫拉的四个不同类别的加工内部结构 - 性质关系的详细研究纤维(K119,K29,KM2 +和K49)。我们采用了一种新型聚焦离子束(FIB)Notch技术,以获得原始内部纤维平面并通过这些表面测量形态和横向刚度通过多频原子力显微镜(AFM)地图。将这些观察结果与从相同拖带拉得的单纤维的拉伸试验相结合,我们获得了与测量的机械性能强烈相关的结构基序的显着洞察。最值得注意的是,我们发现在低模量,非热处理纤维中特别明显的交替刚度带,揭示了内部结构变化的独特表现,有助于解释材料反应的观察到的趋势。 图形抽象 显示省略

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