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Effect of Chemical Treatment on Mechanical and Physical Properties of Non-Wowen Kenaf Fiber Mat reinforced Polypropylene Biocomposites

机译:化学处理对非织造keNaf纤维垫加固聚丙烯复合材料的机械和物理性质的影响

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Kenaf fibre mat (KFM) reinforced polypropylene (PP) biocomposites have been prepared using sandwich structure and hot press moulding technique. To enhance the interfacial bonding between PP and kenaf fibre, KFM was chemically treated with two different chemicals which are 5% hydrogen peroxide and 2% silane. Fourier transform infrared (FTIR) was used to characterize the chemical constituents in both treated and untreated kenaf fibres. Universal tensile machine (UTM) was used to determine mechanical properties (tensile and flexural strength, tensile and flexural modulus) of both treated and untreated KFM-PP biocomposites. Water absorption test was also conducted in order to evaluate its water-resistance performance. The result shows that peroxide treatment demonstrated the highest performance in mechanical and water absorption properties compared to other chemical treatment. SEM morphological studies proved that almost all treated KFM showing good fibre-matrix interfacial adhesion which less fibre pull out, void and and small interface gap. Thus, the chemical treatment on KFM improved fibre-matrix adhesion, which also contributed to the enhancement of mechanical properties and physical properties compared to untreated KFM reinforced PP biocomposites.
机译:使用夹心结构和热压模塑技术制备了keNaf纤维垫(KFM)增强聚丙烯(PP)生物复合材料。为了增强PP和KENAF纤维之间的界面键合,用两种不同的化学物质化学处理KFM,其是5%过氧化氢和2%硅烷的化学物质。傅里叶变换红外(FTIR)用于表征治疗和未处理的KENAF纤维中的化学成分。通用拉伸机(UTM)用于确定经处理和未处理的KFM-PP生物复合材料的机械性能(拉伸强度,拉伸和弯曲模量)。还进行了吸水性试验,以评估其防水性能。结果表明,与其他化学处理相比,过氧化物处理证明了机械和吸水性的最高性能。 SEM形态学研究证明,几乎所有处理的KFM显示出较好的纤维 - 基质界面粘附,纤维拉出,空隙和小的界面间隙。因此,与未处理的KFM增强PP生物复合材料相比,对KFM改善的纤维 - 基质粘附性提高了纤维 - 基质粘合性的化学处理。

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