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使用近红外傅里叶变换拉曼光谱法测定大麻纤维的机械强度特性

Determination of mechanical strength properties of hemp fibers using near-infrared fourier transform Raman microspectroscopy.

作者信息

Peetla Padmaja, Schenzel Karla C, Diepenbrock Wulf

机构信息

Agricultural Department, Martin Luther University Halle-Wittenberg, Ludwig-Wucherer-Strasse 2, D-06108 Halle, Germany.

出版信息

Appl Spectrosc. 2006 Jun;60(6):682-91. doi: 10.1366/000370206777670602.

Abstract

Fourier transform near-infrared (FT-NIR) Raman microspectroscopy was adopted for analyzing the micro mechanical tensile deformation behavior of cellulosic plant fibers. Mechanical strength parameters such as tensile strength, failure strain, and Young's modulus of diversified hemp fibers were determined within the range of single fiber cells and fiber filaments. The analysis of fiber deformation at the molecular level was followed by the response of a characteristic Raman signal of fiber cellulose that is sensitive to the tensile load applied. The frequency shift of the Raman signal at 1095 cm(-1) to lower wavenumbers was observed when the fibers were subjected to tensile strain. Microstructural investigations using electron microscopy under environmental conditions supported the discussion of mechanical properties of hemp fibers in relation to several fiber variabilities. Generally, mechanical strength properties of diversified hemp fibers were discussed at the molecular, microstructural, and macroscale level. It was observed that mechanical strength properties of the fibers can be controlled in a broad range by appropriate mercerization parameters such as alkali concentration, fiber shrinkage, and tensile stress applied to the fibers during the alkaline treatments.

摘要

采用傅里叶变换近红外(FT-NIR)拉曼显微光谱法分析纤维素植物纤维的微观机械拉伸变形行为。在单纤维细胞和纤维长丝范围内测定了多种麻纤维的拉伸强度、断裂应变和杨氏模量等机械强度参数。在分子水平上对纤维变形进行分析之后,接着研究了对施加的拉伸载荷敏感的纤维纤维素特征拉曼信号的响应。当纤维受到拉伸应变时,观察到拉曼信号在1095 cm(-1)处的频率向更低波数偏移。在环境条件下使用电子显微镜进行的微观结构研究支持了关于麻纤维机械性能与几种纤维变异性之间关系的讨论。总体而言,在分子、微观结构和宏观尺度上讨论了多种麻纤维的机械强度性能。观察到,通过适当的丝光处理参数,如碱浓度、纤维收缩率以及碱性处理过程中施加在纤维上的拉伸应力,可以在很大范围内控制纤维的机械强度性能。

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