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PROPERTIES OF REINFORCED POLYMER COMPOSITE PRODUCED FROM COCONUT FIBER

机译:椰子纤维生产的增强聚合物复合物的性能

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摘要

This study aimed at the production of reinforced polymer composites from coconut fibers and plastics. Coir fiber (CF) sheets with dimensions of 200 x 200 x 12 mm (+/- 3 mm) were used as the natural fiber, whereas a thermosetting plastic or an elastomer (unsaturated polyester [UPE] or silicon rubber [SIR]) was used as the binder in the matrix. Processing was performed using the vacuum infiltration method, wherein the liquid polymer was made to infiltrate the cellulose of the natural structure of the CFs and disperse within the CF matrix. The effect of production variables on thermal, sound, and flexural properties was evaluated. Material characterization tests revealed that the addition of UPE and SIR as reinforcing materials enhanced the thermal conductivity of the CFs. UPE improved the modulus of rupture of the CFs. The study further revealed that CF/SIR composites showed high ductility. Analysis of the sound absorption properties of the composites revealed that the noise reduction coefficient (NRC) of the CF/400wt % SIR composite was the highest. Moreover, the CF/SIR composites showed higher sound absorption efficiency (alpha) values at high frequencies than those of the CF/UPE composites. However, the polymers had no effect on the NRC of the neat CFs when added in a low concentration (200 wt%). This study shows that coconut husk waste can be used to produce reinforced polymer composites with desirable thermal conductivity and sound absorption characteristics.
机译:本研究旨在用椰子纤维和塑料生产增强聚合物复合材料。天然纤维使用尺寸为200 x 200 x 12 mm(+/-3 mm)的椰壳纤维(CF)片材,而基质中的粘合剂使用热固性塑料或弹性体(不饱和聚酯[UPE]或硅橡胶[SIR])。使用真空渗透法进行处理,其中液体聚合物被制成渗透CFs天然结构的纤维素,并分散在CF基质中。评估了生产变量对热、声和弯曲性能的影响。材料特性测试表明,UPE和SIR作为增强材料的添加增强了CFs的导热性。UPE提高了碳纤维的断裂模量。研究进一步表明,CF/SIR复合材料具有较高的延展性。对复合材料吸声性能的分析表明,CF/400wt%SIR复合材料的降噪系数(NRC)最高。此外,与CF/UPE复合材料相比,CF/SIR复合材料在高频下表现出更高的吸声效率(α)。然而,当以低浓度(200 wt%)添加时,聚合物对纯CFs的NRC没有影响。这项研究表明,椰子壳废料可用于生产具有理想导热性和吸声特性的增强聚合物复合材料。

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