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Fully Biodegradable Composites: Thermal Flammability Moisture Absorption and Mechanical Properties of Natural Fibre-Reinforced Composites with Nano-Hydroxyapatite

机译:完全可生物降解的复合材料:具有纳米羟基磷灰石的天然纤维增强复合材料的热可燃性吸湿性和机械性能

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摘要

Natural fibre-reinforced poly(lactic acid) (PLA) laminates were prepared by a conventional film stacking method from PLA films and natural fabrics with a cross ply layup of [0/90/0/90/0/90], followed by hot compression. Natural fibre (NF) nano-hydroxyapatite (nHA) filled composites were produced by the same manufacturing technique with matrix films that had varying concentrations of nHA in the PLA. Their flammability, thermal, moisture absorption and mechanical properties were analysed in terms of the amount of nHA. The flame behavior of neat PLA and composites evaluated by the UL-94 test demonstrated that only the composite containing the highest quantity of nHA (i.e., 40 wt% nHA in matrix) was found to achieve an FH-1 rating and exhibited no recorded burn rate, whereas other composites obtained only an FH-3. The thermal degradation temperature and mass residue were also observed, via thermogravimetric analysis, to increase when increasing concentrations of nHA were added to the NF composite. The tensile strength, tensile modulus and flexural modulus of the neat resin were found to increase significantly with the introduction of flax fibre. Conversely, moisture absorption was found to increase and mechanical properties to decrease with both the presence of NF and increasing concentrations of nHA, and subsequent mechanical properties experienced an obvious reduction.
机译:天然纤维增强的聚乳酸(PLA)层压板是通过常规的膜堆叠方法由PLA薄膜和天然纤维制成的,其交叉铺网层数为[0/90/0/90/0/90],然后加热压缩。天然纤维(NF)纳米羟基磷灰石(nHA)填充的复合材料是通过相同的制造技术,用在PLA中具有不同nHA浓度的基质薄膜制成的。根据nHA的量分析了它们的易燃性,热,吸湿性和机械性能。通过UL-94测试评估的纯PLA和复合材料的火焰行为表明,仅发现包含最高nHA含量(即基质中nHA含量为40 wt%)的复合材料达到FH-1等级,并且没有燃烧记录率,而其他复合材料仅获得FH-3。通过热重分析,还观察到热降解温度和质量残留物,当将增加浓度的nHA添加到NF复合材料中时,热降解温度和质量残留物会增加。发现随着亚麻纤维的引入,纯树脂的拉伸强度,拉伸模量和挠曲模量显着增加。相反,发现随着NF的存在和nHA浓度的增加,水分吸收增加,机械性能降低,随后的机械性能明显降低。

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