首页> 外文期刊>Journal of Applied Polymer Science >STRUCTURE AND DYEABILITY OF BOMBYX MORI SILK FIBERS WITH DIFFERENT FILAMENT SIZES
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STRUCTURE AND DYEABILITY OF BOMBYX MORI SILK FIBERS WITH DIFFERENT FILAMENT SIZES

机译:不同长丝尺寸的BOMBYX MORI真丝纤维的结构和可染性

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摘要

This study deals with the analysis of structure, physical properties, and dyeing behavior of silk fibers with different filament sizes. Fine and coarse silk fibers were obtained from Akebono and Ariake cocoon varieties, respectively. Both samples exhibited a fairly similar x-ray crystallinity, while the degree of molecular orientation increased with decreasing the fiber size. Tensile strength and energy of fine silk fibers were significantly higher, while elongation at break did not change in relation to the fiber size. Fine silk fibers exhibited a slightly higher thermal stability, as shown by the upward shift of both the DSC decomposition temperature and the TMA final extension step at above 300 degrees C. The TGA and DMA (E '') patterns remained unchanged regardless of fiber size. The amino acid analysis confirmed the absence of any difference of chemical structure between fine and coarse silk fibers, the content of acidic, basic, and other characteristic amino acid residues being exactly the same. Accordingly, both samples adsorbed the same amount of hydrochloric acid. Exhaustion dyeing tests with various direct, acid, and reactive dyes showed the occurrence of appreciable differences in the perceived color between fine and coarse silk fibers. The size of color difference was quantitatively evaluated by reflectance measurements and discussed in relation to silk fiber morphology, structure, as well as dyeing conditions. The kinetics of diffusion of two model dyes was not significantly affected by the different fiber size and structure. (C) 1996 John Wiley & Sons, Inc. [References: 22]
机译:本研究分析了不同长丝尺寸的丝纤维的结构,物理性质和染色行为。细丝纤维和粗丝纤维分别来自Akebono和Ariake茧品种。两种样品均表现出相当相似的X射线结晶度,而分子取向度随纤维尺寸的减小而增加。细丝纤维的拉伸强度和能量明显更高,而断裂伸长率与纤维尺寸无关。细丝纤维表现出稍高的热稳定性,如DSC分解温度和TMA最终延伸步骤在300摄氏度以上的向上移动所表明的。无论纤维尺寸如何,TGA和DMA(E'')图案均保持不变。氨基酸分析证实,在细丝纤维和粗丝纤维之间不存在任何化学结构差异,酸性,碱性和其他特征性氨基酸残基的含量完全相同。因此,两个样品吸附相同量的盐酸。用各种直接染料,酸性染料和反应性染料进行的精疲力尽的染色测试表明,在细丝和粗丝纤维之间,感知到的颜色出现了明显的差异。通过反射率测量来定量评估色差的大小,并讨论与蚕丝纤维的形态,结构和染色条件有关的问题。两种模型染料的扩散动力学不受纤维尺寸和结构的不同影响。 (C)1996 John Wiley&Sons,Inc. [参考:22]

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