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Fibre matrix adhesion of natural fibres cotton, flax and hemp in polymeric matrices analyzed with the single fibre fragmentation test

机译:用单纤维破碎测试分析聚合物基质中天然纤维棉,亚麻和大麻纤维对纤维基质的粘附力

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摘要

In this research the adhesion and the resulting interfacial shear strength (IFFS) between the natural fibres flax, hemp and cotton and the polymer matrices polypropylene with coupling agent (MAPP) and polylactide acid (PLA) was surveyed with the single fibre fragmentation test (SFFT). The adhesion between MAPP and the fibres was good enough to produce fragments, whereas the adhesion between PLA and flax was too weak to transmit enough tension for fibre cracks which is clearly visible on SEM-photographs. Comparing the IFFS values of the fibres in MAPP with an equal fibre diameter shows that the IFFS value of flax is highest with 7.09 N/mm(2) followed by hemp 6.13 N/mm(2). The IFFS of cotton is a lot smaller (0.664 N/mm(2)). The critical fragmentation or fragmentation length of the bast fibres flax (3.16 mm) and hemp (3.20 mm) in MAPP is smaller than the critical fragmentation length of cotton (5.03 mm). The adhesion between the lignocellulosic fibres and MAPP is much better than between the lignin and pectin free cellulose fibre and MAPP. Possible reasons for this - the surface structure of the cotton fibre and its different chemical composition being made up of only cellulose, hemi-cellulose and wax with no pectin or lignin present - are discussed.
机译:在这项研究中,通过单纤维断裂试验(SFFT)对天然纤维亚麻,大麻和棉与带有偶联剂(MAPP)和聚丙交酯酸(PLA)的聚合物基聚丙烯之间的粘合力和由此产生的界面剪切强度(IFFS)进行了调查。 )。 MAPP与纤维之间的粘合力足以产生碎屑,而PLA与亚麻之间的粘合力太弱,无法传递足够的张力使纤维破裂,这在SEM照片上很明显。比较具有相同纤维直径的MAPP中纤维的IFFS值,可以发现亚麻的IFFS值最高,为7.09 N / mm(2),其次是大麻6.13 N / mm(2)。棉花的IFFS小得多(0.664 N / mm(2))。 MAPP中韧皮纤维亚麻(3.16毫米)和大麻(3.20毫米)的临界碎裂或碎裂长度小于棉花的临界碎裂长度(5.03毫米)。木质纤维素纤维和MAPP之间的粘合性比木质素和无果胶的纤维素纤维和MAPP之间的粘合性好得多。讨论了可能的原因-棉纤维的表面结构及其不同的化学组成仅由纤维素,半纤维素和蜡组成,不含果胶或木质素。

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