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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Use of Polarized Spectroscopy as a Tool for Examining the Microstructure of Cellulosic Textile Fibers
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Use of Polarized Spectroscopy as a Tool for Examining the Microstructure of Cellulosic Textile Fibers

机译:偏振光谱作为检查纤维素纺织纤维微观结构的工具的使用

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摘要

Textile artifacts form a vital part of our cultural heritage. In order to determine appropriate methods of conservation, storage, and display, it is important to understand the current physical state of an artifact, as effected by the microstructure of the component fibers. The semicrystalline nature of the constituent polymer aggregates, the degree of crystallinity, and the crystallite orientation have a significant influence on mechanical properties. The value of polarized Fourier transform infrared (FT-IR) spectroscopy in probing these aspects of cellulosic fibers has been assessed. A variety of representative fibers (both natural plant fibers and regenerated materials) were examined by polarized attenuated total reflection spectroscopy (Pol-ATR) and polarized infrared microspectroscopy (Pol-(mu)IR); the former is a surface sampling technique and the latter is a transmission technique. The introduction of a polarizer into the system allows the alignment as well as the nature of bonds to be determined, and thus the presence and extent of crystallinity or long-range ordering can be investigated. Using the data from the Pol-ATR experiments, it was found to be possible to derive the principle alignment of the cellulose polymer with respect to the fiber axis, along with an indication of the total cellulose crystallinity of the material, as measured by a crystallinity parameter, chi. The Pol-(mu)IR spectra, on the other hand, yielded more limited information, particularly when considering plant fibers with more complex microstructures.
机译:纺织制品是我们文化遗产的重要组成部分。为了确定适当的保存,存储和展示方法,重要的是了解工件的当前物理状态,该状态受组分纤维的微观结构影响。组成聚合物聚集体的半结晶性质,结晶度和微晶取向对机械性能有重要影响。已评估了偏振傅立叶变换红外(FT-IR)光谱在探测纤维素纤维这些方面的价值。通过偏振衰减全反射光谱(Pol-ATR)和偏振红外显微光谱(Pol-μIR)检查了多种代表性纤维(天然植物纤维和再生材料);前者是表面采样技术,后者是传输技术。将偏振器引入系统中可以确定取向和键的性质,因此可以研究结晶度或远距离有序性的存在和程度。使用来自Pol-ATR实验的数据,发现可以得出纤维素聚合物相对于纤维轴的原理排列,以及通过结晶度测量的材料总纤维素结晶度的指示。参数chi。另一方面,Pol-μIR光谱产生的信息更有限,尤其是在考虑具有更复杂的微观结构的植物纤维时。

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