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Quantifying High-Performance Material Microstructure Using Nanomechanical Tools with Visual and Frequency Analysis

机译:使用具有视觉和频率分析功能的纳米机械工具量化高性能材料的微观结构

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摘要

High-performance materials like ballistic fibers have remarkable mechanical properties owing to specific patterns of organization ranging from the molecular scale, to the micro scale and macro scale. Understanding these strategies for material organization is critical to improving the mechanical properties of these high-performance materials. In this work, atomic force microscopy (AFM) was used to detect changes in material composition at an extremely high resolution with transverse-stiffness scanning. New methods for direct quantification of material morphology were developed, and applied as an example to these AFM scans, although these methods can be applied to any spatially-resolved scans. These techniques were used to delineate between subtle morphological differences in commercial ultra-high-molecular-weight polyethylene (UHMWPE) fibers that have different processing conditions and mechanical properties as well as quantify morphology in commercial Kevlar®, a high-performance material with an entirely different organization strategy. Both frequency analysis and visual processing methods were used to systematically quantify the microstructure of the fiber samples in this study. These techniques are the first step in establishing structure-property relationships that can be used to inform synthesis and processing techniques to achieve desired morphologies, and thus superior mechanical performance.
机译:由于从分子尺度到微观尺度和宏观尺度的特定组织模式,诸如弹道纤维之类的高性能材料具有显着的机械性能。了解这些材料组织策略对于提高这些高性能材料的机械性能至关重要。在这项工作中,原子力显微镜(AFM)用于通过横向刚度扫描以极高的分辨率检测材料成分的变化。尽管可以将这些方法应用于任何空间分辨的扫描,但已开发出了直接量化材料形态的新方法,并将其作为这些AFM扫描的示例。这些技术用于区分具有不同加工条件和机械性能的商业超高分子量聚乙烯(UHMWPE)纤维的细微形态差异,并量化商业Kevlar®(一种完全具有高性能的高性能材料)中的形态。不同的组织策略。在这项研究中,频率分析和视觉处理方法均用于系统地量化纤维样品的微观结构。这些技术是建立结构-属性关系的第一步,可用于通知合成和加工技术以实现所需的形态,从而获得优异的机械性能。

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