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Effect of Ceramic Fillers on Mechanical Properties of Bamboo Fiber Reinforced Epoxy Composites: A Comparative Study

机译:陶瓷填料对竹纤维增强环氧复合材料力学性能的影响:对比研究

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In order to obtain the favoured material properties for a particular application, it is important to know how the material performance changes with the filler content under given loading conditions. In this study, a series of bamboo fiber reinforced epoxy composites are fabricated using conventional filler (aluminium oxide (Al_2O_3) and silicon carbide (SiC) and industrial wastes (red mud and copper slag) particles as filler materials. By incorporating the chosen particulate fillers into the bamboo-fiber reinforced epoxy, synergistic effects, as expected are achieved in the form of modified mechanical properties. Inclusion of fiber in neat epoxy improved the load bearing capacity (tensile strength) and the ability to withstand bending (flexural strength) of the composites. But with the incorporation of particulate fillers, the tensile strengths of the composites are found to be decreasing in most of the cases. Among the particulate filled bambooepoxy composites, least value of void content are recorded for composites with silicon carbide filling and for the composites with glass fiber reinforcement minimum void fraction is noted for red mud filling. The effects of these four different ceramics on the mechanical properties of bambooepoxy composites are investigated and the conclusions drawn from the above investigation are discussed.
机译:为了获得特定应用的有利材料特性,重要的是要知道材料性能如何随着在给定负载条件下的填充物含量而变化。在该研究中,使用常规填料(氧化铝(Al_2O_3)和碳化硅(SiC)和工业废物(红泥和铜渣)颗粒作为填充材料制造一系列竹纤维增强环氧树脂复合材料。通过掺入所选择的颗粒填料进入竹纤维增强环氧树脂,等预期的协同作用是以改良的机械性能的形式实现的。将纤维含有整齐的环氧树脂,改善了承载能力(拉伸强度)和承受弯曲(弯曲强度)的能力但是复合材料。随着颗粒状填料的掺入,在大多数情况下发现复合材料的拉伸强度降低。在颗粒状填充的竹己烷基复合材料中,记录空隙含量的最小值用于复合材料,用于碳化硅填充的复合材料和具有玻璃纤维增​​强最小空隙率的复合物用于红泥浆填充。这四个差异的影响研究了竹氧基复合材料的力学性质的租金陶瓷,并讨论了从上述调查中得出的结论。

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