Tensile and Flexural Properties of Kenaf Reinforced Polylactic Acid under Heat Effect

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Meor Syazalee Meor Sha, R. Zulkifli
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Abstract

iocomposite is a combination of natural reinforcement and natural matrix material consisting of kenaf reinforced with polylactic acid (PLA), where its mechanical properties will be affected when exposed to heat. This research investigates the effect of exposure of biocomposites to different temperatures on the mechanical properties of biocomposites, consisting of tensile and flexural properties. Before producing the sample, kenaf in the form of one-way yarn is conditioned with 40% RH humidity, and then the sample is produced using hot compression molding techniques by combining kenaf with PLA. Tensile and bending tests carried out in a heating chamber with the heat were studied using a Universal Testing Machine (UTM). The choice of heat temperature depends on the glass transition temperature of polylactic acid, where the study temperature ranges from 25 oC to 65 oC. From the results of the study, it was found that the maximum bending strength and modulus (117 MPa, 5.8 GPa) and the maximum tensile strength and modulus (59 MPa, 3.2 GPa) were both obtained at low temperatures (25 oC). While the modulus value decreases significantly at 55 oC, the tensile and flexural properties both show a steady decrease with increasing temperature. Therefore, the presence of temperature has a significant effect on the tensile and flexural properties of kenaf-reinforced PLA biocomposites. When it is exposed to high temperatures, the mechanical quality deteriorates, and the risk of failure increases. Failure is caused by poor reinforcement and matrix bonding caused by the degradation of natural fiber properties of kenaf and the level of PLA plastic deformation.
热效应下 Kenaf 增强聚乳酸的拉伸和挠曲性能
生物复合材料是天然加固材料和天然基质材料的组合,由用聚乳酸(PLA)加固的槿麻组成。本研究调查了生物复合材料暴露在不同温度下对其机械性能(包括拉伸和弯曲性能)的影响。在制作样品之前,先将单向纱形式的槿麻在 40% 相对湿度下进行湿度调节,然后使用热压成型技术将槿麻与聚乳酸结合在一起制作样品。使用万能试验机(UTM)研究了在加热室中进行的拉伸和弯曲试验。加热温度的选择取决于聚乳酸的玻璃化转变温度,研究温度范围为 25 摄氏度至 65 摄氏度。研究结果表明,在低温(25 摄氏度)下可获得最大弯曲强度和模量(117 兆帕,5.8 千兆帕)以及最大拉伸强度和模量(59 兆帕,3.2 千兆帕)。虽然模量值在 55 摄氏度时会明显下降,但拉伸和弯曲性能都随着温度的升高而稳步下降。因此,温度的存在对槿麻增强聚乳酸生物复合材料的拉伸和弯曲性能有显著影响。当暴露在高温下时,机械质量会下降,失效的风险也会增加。失效的原因是由于槿麻天然纤维性能退化和聚乳酸塑性变形水平导致的加固和基体粘结不良。
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Jurnal Kejuruteraan
Jurnal Kejuruteraan ENGINEERING, MULTIDISCIPLINARY-
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16.70%
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审稿时长
24 weeks
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