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Hybrid bio-composites reinforced with sisal-glass fibres and Portland cement particles: A statistical approach

机译:剑麻玻璃纤维和硅酸盐水泥颗粒增强的混合生物复合材料:一种统计方法

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摘要

The hybrid configuration of bio-reinforced composites has established a new extended boundary for the development of pro-ecological technologies due to light weight, moderate specific strength, low cost, environmental benefits, and potential applications of natural components. This work investigates the physical and mechanical properties of hybrid composites made of sisal/glass fibres and Portland cement inclusions. A full factorial design was generated to identify the effects of the stacking sequence and cement particles on the flexural strength, flexural stiffness, apparent density, apparent porosity and water absorption of the composites. The significant contributions of these main factors and their interactions were determined via Design of Experiments (DoE) and Analysis of Variance (ANOVA). The fracture features and damage mechanisms of hybrid composite were also reported. The inclusion of cement microparticles led to an increased apparent porosity, as well as enhanced water absorption, flexural stiffness and flexural strength of the hybrid composites. The mechanical properties were strongly dependent on the fibre stacking sequence, which accounts for approximately 98% of the effects observed. Moreover, the stacking sequence affected the damage mechanism of the bio-composites. Finally, the replacement of glass fibres by unidirectional sisal reinforcements may potentially improve the specific properties in structural applications with an environmental sustainable footprint.
机译:由于重量轻,比强度适中,成本低,具有环境效益以及天然成分的潜在应用,生物增强复合材料的混合构造为生态技术的发展建立了新的扩展边界。这项工作研究了由剑麻/玻璃纤维和硅酸盐水泥包裹体制成的混合复合材料的物理和机械性能。进行了全因子设计,以识别堆积顺序和水泥颗粒对复合材料的弯曲强度,弯曲刚度,表观密度,表观孔隙率和吸水率的影响。这些主要因素及其相互作用的重要贡献是通过实验设计(DoE)和方差分析(ANOVA)确定的。还报道了混杂复合材料的断裂特征和破坏机理。水泥微粒的加入导致混合复合材料的表观孔隙率增加以及吸水率,挠曲刚度和挠曲强度提高。机械性能在很大程度上取决于纤维堆积的顺序,大约占观察到效果的98%。而且,堆积顺序影响了生物复合物的破坏机理。最后,用单向剑麻增强材料代替玻璃纤维可能会改善结构应用中的特定性能,并具有可持续的环境足迹。

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