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Automated spray up process for Pineapple Leaf Fibre hybrid biocomposites

机译:菠萝叶纤维杂化生物复合材料的自动喷涂工艺

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摘要

This paper investigates the fabrication of hybrid biocomposites of Pineapple Leaf Fibre (PALF)-glass-vinyl ester (VE) utilizing automated spray up process. This method can be applied for components in interior aircraft and automotive industry. In this study, the manual chop spray gun is integrated with industrial robotic arm to produce random discontinuous fibre composite (DFC) from PALF roving (273 tex) and vinyl ester resin. The characterization includes mechanical (tensile, and flexural test), thermal (DMA and TGA) and a morphological analysis (SEM) of the surface fractures from the tensile test samples. For each mechanical result, coefficient of variance (COV) is calculated to measure the variability of the mean distribution. The comparison is made among the glass (100% glass), PALF-vinyl ester (100% PALF), and glass-PALF-vinyl ester (PALF 50%, Glass 50%) hybrid biocomposites on the mechanical strength and consistency of the outcome. The result showed that hybridization increased the tensile strength by 171% compared to PALF-VE composite, reduced the composite density and increase thermal properties compared to PALF-VE and glass-VE composites.
机译:本文研究了利用自动喷涂工艺制备菠萝叶纤维(PALF)-玻璃-乙烯基酯(VE)杂化生物复合材料的方法。该方法可应用于室内飞机和汽车行业的零部件。在这项研究中,手动排骨喷枪与工业机械手集成在一起,以PALF粗纱(273 tex)和乙烯基酯树脂生产无规不连续纤维复合材料(DFC)。表征包括机械性能(拉伸和弯曲测试),热性能(DMA和TGA)以及来自拉伸测试样品的表面裂缝的形态分析(SEM)。对于每个机械结果,计算方差系数(COV)以测量均值分布的变异性。对玻璃(100%玻璃),PALF-乙烯基酯(100%PALF)和玻璃-PALF-乙烯基酯(PALF 50%,玻璃50%)混合生物复合材料进行比较,得出机械强度和结果的一致性。结果表明,与PALF-VE复合材料相比,杂交使抗张强度提高了171%,与PALF-VE和玻璃-VE复合材料相比,降低了复合材料的密度并提高了热性能。

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