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Thermochemical and mechanical properties of tea tree (Melaleuca alternifolia) fibre reinforced tapioca starch composites

机译:茶树纤维木薯淀粉复合材料的热化学和力学性能

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摘要

We aim to utilise the tea tree (Melaleuca alternifolia) fibre, a waste from the distillation process, as a reinforcement or filler in tapioca starch (TS) composites. Fabrication of tea tree fibre-reinforced TS composites was successfully developed using a casting method. The physical, thermo-chemical, and mechanical properties were tested in order to get the characterisation of the composites. From the mechanical test, the addition of 5% (v/v) tea tree fibre as a filler improved the tensile strength of the TS composites up to 34.39% in tea tree leaf-reinforced TS composites (TTL/TS), 82.80% in tea tree branch-reinforced TS composites (TTB/TS) and 203.18% in tea tree trunk-reinforced TS composites (TTT/TS). The water absorption and swelling of all tea tree fibre-reinforced composites decreased compared to those of TS composites. Most importantly, all parts of the tea tree waste, namely, the tea tree leaf, tea tree branch and tea tree trunk, have additional potential value as fibres that can act as a reinforcement in developing a green biocomposite.
机译:我们的目标是利用茶树(Melaleuca alternifolia)纤维(蒸馏过程产生的废料)作为木薯淀粉(TS)复合材料的增强剂或填充剂。茶树纤维增强的TS复合材料的制造是通过铸造方法成功开发的。测试了物理,热化学和机械性能,以便对复合材料进行表征。根据机械测试,添加5%(v / v)的茶树纤维作为填充剂可改善TS复合材料在茶树叶子增强TS复合材料(TTL / TS)中的拉伸强度,达到34.39%,而在82.80%中茶树增强的TS复合材料(TTB / TS)和203.18%的茶树增强的TS复合材料(TTT / TS)。与TS复合材料相比,所有茶树纤维增强复合材料的吸水率和溶胀率均降低。最重要的是,茶树废料的所有部分,即茶叶,茶树分支和茶树树干,都具有额外的潜在价值,因为它们可以作为纤维增强绿色生物复合材料的发展。

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