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Effect of fabricated density and bamboo species on physical-mechanical properties of bamboo fiber bundle reinforced composites

机译:人造密度和竹种类对竹纤维束增强复合材料物理力学性能的影响

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摘要

Bamboo stems were subjected to a mechanical treatment process for the extraction of bamboo fiber bundles. The fiber bundles were used as reinforcement for the fabrication of high-performance composites with phenolic resins as matrix. The influence of fabricated density and bamboo species on physical-mechanical properties of bamboo fiber bundle reinforced composites (BFCs) was evaluated. The results revealed that BFCs with density of 1200 kg/m(3) exhibited lower water absorption, better dimensional stability, and higher mechanical properties with comparison to those with lower density. The changes in microstructures of BFCs with respect to density gave evidence that the high performance of BFCs with high density was due to the almost complete collapse of bamboo lumens, which resulted in the formation of solid bamboo and thin resin films with water resistance ability. BFCs fabricated from five bamboo species all showed better properties compared to commercialized bamboo-based composites. However, significant differences in physical-mechanical properties of BFCs among bamboo species were also found. This may be attributed to the variations in anatomical structure and physical-mechanical properties among original bamboo species. From a practical production view, the effect of bamboo species on properties of BFCs should be properly taken into consideration.
机译:对竹茎进行机械处理,以提取竹纤维束。纤维束被用作增强材料,用于制造以酚醛树脂为基质的高性能复合材料。评估了人造密度和竹种类对竹纤维束增强复合材料(BFCs)物理机械性能的影响。结果表明,与密度较低的那些相比,密度为1200 kg / m(3)的BFC表现出更低的吸水率,更好的尺寸稳定性和更高的机械性能。 BFCs的微观结构相对于密度的变化提供了证据,表明高密度BFC的高性能归因于竹腔的几乎完全塌陷,这导致形成了具有抗水性的固态竹膜和薄树脂膜。与商业化的竹基复合材料相比,由五个竹种制成的BFC均显示出更好的性能。但是,在竹种之间,BFCs的物理机械性能也存在显着差异。这可能归因于原始竹种之间的解剖结构和物理机械特性的变化。从实际生产的角度来看,应适当考虑竹种对BFCs性能的影响。

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