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Effects of High-Temperature Exposure on the Mechanical Properties of Kenaf Composites

机译:高温暴露对KENAF复合材料力学性能的影响

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摘要

Automotive parts, including dashboards and trunk covers, are now fabricated through a compression-molding process in order to produce lightweight products and optimize fuel consumption. However, their mechanical strength is not compromised to avoid safety issues. Therefore, this study investigates kenaf-fiber-reinforced polypropylene composites using a simple combing approach to unidirectionally align kenaf fibers at 0°. The kenaf composite was found to withstand a maximal temperature of 120 °C. The tensile and flexural strengths of the aligned kenaf composites (50 and 90 MPa, respectively) were three times higher than those of the commercialized Product T (between 39 and 30.5 MPa, respectively) at a temperature range of 90 to 120 °C. These findings clearly showed that the mechanical properties of aligned kenaf fibers fabricated through the combing technique were able to withstand high operating temperatures (120 °C), and could be used as an alternative to other commercial natural-fiber products.
机译:包括仪表板和行李箱盖的汽车部件现在通过压缩模塑过程制造,以生产轻量级产品并优化燃油消耗。然而,它们的机械强度不会受到影响,以避免安全问题。因此,本研究通过简单的梳理方法调查Kenaf-纤维增强的聚丙烯复合材料,以在0°处单向对齐Kenaf纤维。发现kEnaf复合材料可承受120°C的最大温度。对齐的keNaf复合材料(分别为50mPa)的拉伸和弯曲强度比商业化产物T(分别在39和30.5MPa)的温度范围为90至120℃的3倍。这些研究结果清楚地表明,通过梳理技术制造的对齐的keNaf纤维的机械性能能够承受高工作温度(120°C),并且可以用作其他商业天然纤维产品的替代品。

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