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首页> 外文期刊>The Journal of the Textile Institute >Void structure in textiles by nuclear magnetic resonance, Part Ⅰ. Imaging of imbibed fluids and image analysis by calculation of fluid density autocorrelation functions
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Void structure in textiles by nuclear magnetic resonance, Part Ⅰ. Imaging of imbibed fluids and image analysis by calculation of fluid density autocorrelation functions

机译:核磁共振在纺织品中的空隙结构,第一部分。通过计算流体密度自相关函数对吸收的流体成像和图像分析

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摘要

Void structure in textiles may be characterized by a variety of methods, including many based on nuclear magnetic resonance (NMR). The NMR techniques are based on the measurement of fluid distribution or diffusion within porous media, and are therefore particularly relevant for characterizing the void space that governs fluid interactions and movement within textile substrates. In this article, we describe the use of NMR imaging, also known as magnetic resonance imaging, to measure average void dimensions in textile fabrics. In addition to direct visualization using NMR images, void space may be analyzed by calculating the fluid density autocorrelation function. The advantages of both types of data analysis are discussed. These NMR techniques are applied to a water-saturated nylon fabric and the results compared to void sizes measured from optical microscopy.
机译:纺织品中的空隙结构可以通过多种方法来表征,包括许多基于核磁共振(NMR)的方法。 NMR技术基于对多孔介质中流体分布或扩散的测量,因此特别适用于表征控制纺织品基材内流体相互作用和运动的空隙空间。在本文中,我们描述了使用NMR成像(也称为磁共振成像)来测量织物中的平均空隙尺寸。除了使用NMR图像直接可视化之外,还可通过计算流体密度自相关函数来分析空隙空间。讨论了两种类型的数据分析的优点。将这些NMR技术应用于水饱和的尼龙织物,并将结果与​​光学显微镜测量的空隙大小进行比较。

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