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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Influence of pre-treatments on the mechanical properties of palmyra palm leaf stalk fiber-polyester composites
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Influence of pre-treatments on the mechanical properties of palmyra palm leaf stalk fiber-polyester composites

机译:预处理对棕榈叶茎秆纤维-聚酯复合材料力学性能的影响

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摘要

Palmyra palm leaf stalk fibers were subjected to various chemical pre-treatments like Mercerization, benzoylation, and permanganate treatment with the aim of improving the adhesion with the matrix. Composites were prepared by reinforcing untreated and pre-treated fibers in unsaturated polyester matrix and mechanical performances are studied. The Mercerized and benzoyl-treated fiber composites had an improvement of around 60% in tensile strength while the tensile modulus increased by 37% and 60%, respectively. In the case of permanganate-treated fiber composites, the flexural strength increased by 70% and flexural modulus increased by 110% in comparison to the untreated composites. The impact strength for the Mercerized and permanganate-treated fiber composite improved by 55% and 42% in comparison to the untreated fiber composites, respectively. Chemical pre-treatment of fibers reduced water absorption of the composites. The benzoyl chloride treated fibers absorbed less water in comparison to the untreated fiber composites. Thermogravimetric analysis showed that the reinforcing-treated. fiber has enhanced the thermal stability of the composites. Scanning electron microscope fractographs of the composites revealed the presence of good adhesion between the fibers and matrix compared to the untreated fiber composites. The composites exhibited comparable properties with other composites based on natural fibers.
机译:为了改善与基质的粘附力,对棕榈叶茎纤维进行了各种化学预处理,如丝光处理,苯甲酰化和高锰酸盐处理。通过在不饱和聚酯基质中增强未处理和预处理的纤维来制备复合材料,并研究其机械性能。丝光处理和苯甲酰处理的纤维复合材料的拉伸强度提高了约60%,而拉伸模量分别提高了37%和60%。与未处理的复合材料相比,在高锰酸盐处理的纤维复合材料中,弯曲强度提高了70%,弯曲模量提高了110%。与未处理的纤维复合材料相比,丝光处理和高锰酸盐处理的纤维复合材料的冲击强度分别提高了55%和42%。纤维的化学预处理降低了复合材料的吸水率。与未处理的纤维复合材料相比,苯甲酰氯处理的纤维吸收的水更少。热重分析表明,经补强处理。纤维增强了复合材料的热稳定性。所述复合材料的扫描电子显微镜断口扫描仪显示,与未处理的纤维复合材料相比,纤维与基质之间存在良好的粘合性。该复合材料表现出与其他基于天然纤维的复合材料相当的性能。

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