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Mechanical processing of bast fibres: The occurrence of damage and its effect on fibre structure

机译:韧皮纤维的机械加工:损伤的发生及其对纤维结构的影响

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摘要

Currently, separation processes used for natural fibres for composite reinforcing textiles cause a significant amount of damage to the fibres. Microscopic analysis showed that industrially processed flax (Linum usitassimium L) fibres contained significantly more defects than green or retted ones and that further mechanical processing did not significantly increase the amount of defects. In this study it has been shown, by analysing the degree of polymerisation of cell wall components indirectly by viscosity measurements, that mechanically induced defects do not significantly cleave the cell wall polymers. Acid hydrolysis, however, induced more degradation of the cell wall polymers in fibres having a greater degree of damage, indicating that that defects are more susceptible to certain chemical reactions and which in turn might cause problems for example, during chemical modification of fibres clue to heterogeneous reactivity. Analogous findings were observed in hemp (Cannabis sativa L.) fibre damaged in the laboratory under controlled conditions, emphasising the need to develop extraction and separation processes that minimise mechanical damage to the fibres. (C) 2012 Elsevier B.V. All rights reserved.
机译:当前,用于复合增强织物的天然纤维的分离方法对纤维造成大量的破坏。显微分析表明,工业加工的亚麻(Linum usitassimium L)纤维所含的瑕疵明显多于未加工的或经ted缝的亚麻,并且进一步的机械加工并未明显增加瑕疵的数量。在这项研究中,通过粘度测量间接分析细胞壁成分的聚合程度,表明机械诱导的缺陷不会显着裂解细胞壁聚合物。但是,酸水解会导致纤维在受损程度更大的纤维上进一步降解,这表明缺陷更容易受到某些化学反应的影响,这反过来可能会引起问题,例如,在纤维化学改性过程中,异质反应性。在受控条件下在实验室中损坏的大麻(大麻)纤维中观察到了类似的发现,强调需要开发提取和分离工艺以最大程度地减少对纤维的机械损伤。 (C)2012 Elsevier B.V.保留所有权利。

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