首页> 外文期刊>Journal of Advanced Manufacturing Technology >HYBRIDIZATION AND THERMAL STABILITY EFFECTS ON PHYSICAL PROPERTIES OF HYBRID GLASS/JUTE FIBER REINFORCED EPOXY COMPOSITES
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HYBRIDIZATION AND THERMAL STABILITY EFFECTS ON PHYSICAL PROPERTIES OF HYBRID GLASS/JUTE FIBER REINFORCED EPOXY COMPOSITES

机译:杂化和热稳定性对混合玻璃/ J麻纤维增强环氧树脂复合材料物理性能的影响

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Incorporation of natural fibers with partial replacement of synthetic fibers leads to a new venture in composite tooling industries due to their recyclability limitation as well as potential for weight and cost reduction. This work compares the density and evaluates the effect of thermal cycles of 0, 1, 3, 7, 12, 20, 30 and 50 cycles at two different temperatures; i) 120°C and?? ii) 200°C to the physical properties of hybrid glass/jute fiber reinforced epoxy laminated composites. The composites were prepared via vacuum infusion working at a pressure of 100 kPa, soaking time of 120 minutes and with the use of flow media. The composite exposed to thermal cycles at 200°C exhibited lower density due to removal of volatile elements which lead to porous structures. It experienced higher weight loss from partial degradation of natural fibers at 200°C. The composite subjected to thermal cycle at 120°C showed stable physical properties even after 50 thermal cycles. The water absorption reflects the level of curing completeness, which varies with exposed temperature and number of thermal cycles. The findings indicate that the hybrid glass/jute fiber reinforced epoxy composite exhibits potential to be used as a tooling material with apparent weight reduction and dimensional stability under thermal effect.
机译:由于天然纤维具有可回收性的局限性以及减轻重量和降低成本的潜力,因此将天然纤维与部分替代合成纤维的结合引入了复合材料模具行业的新业务。这项工作比较了密度并评估了在两个不同温度下0、1、3、7、12、20、30和50个循环的热循环的影响。 i)120°C和ii)混合玻璃/黄麻纤维增强环氧层压复合材料的物理性能为200°C。通过在100kPa的压力下,120分钟的均热时间和使用流动介质的真空灌注工作来制备复合材料。暴露于200°C热循环的复合材料由于去除了会导致多孔结构的挥发性元素而显示出较低的密度。由于在200°C下天然纤维的部分降解,它的重量损失更高。即使在50次热循环后,在120℃下进行热循环的复合材料也显示出稳定的物理性能。吸水率反映了固化完整性的水平,该水平随暴露温度和热循环次数而变化。研究结果表明,玻璃纤维/黄麻纤维增强环氧树脂复合材料具有潜力,可作为一种工具材料,在热效应下具有明显的重量减轻和尺寸稳定性。

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