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Characterization of wood polymer composite and design of root trainer

机译:木质聚合物复合材料的特征与根训练器设计

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Biopolymers have received much attention of researchers due to concerns over disposal of plastics, greenhouse gas emission and environmental problems associated with it. Polylactic Acid (PLA) is one of the thermoplastic biopolymer made from lactic acid by using agricultural resources. PLA has received significant interest due to its competitive properties when compared to commodity plastics such as Polyethylene, Polypropylene and Polystyrene. PLA has interesting properties such as high stiffness, UV stability, clear and glossy finish. However, application of PLA is restricted due to its brittle nature. Engineering and thermal properties of PLA can be improved by reinforcing fibres and fillers. Lignocelluloses or natural fibres such as Jute, Hemp, Bamboo, Sisal and Wood fibres can be used as reinforcement. By using natural fibres, a very bio-compostable composite can be produced. In the present study, short fibres from Melia Dubia wood were extracted and used as reinforcement to PLA Bio-Polymer matrix. Characterization of developed composite was obtained using tensile and flexural tests. Tensile test simulation of composite was performed using Altair Hypermesh, a Finite Element (FE) preprocessor and LS-Dyna an explicit FE solver. MAT_01, an elastic material model in LS-Dyna was used to model the behaviour. Further, the design of Root Trainer using developed composite has been explored. A Root Trainer is an aid to the cultivation of seedlings in nurseries. Root Trainer made by using developed composite has advantage of biodegradability and eco-friendly nature.
机译:由于对与其相关的塑料,温室气体排放和环境问题的处理,生物聚合物受到了研究人员的许多关注。聚乳酸(PLA)是通过使用农业资源制成的热塑性生物聚合物之一。与商品塑料如聚乙烯,聚丙烯和聚苯乙烯相比,PLA由于其竞争性质而受到显着的兴趣。 PLA具有很有趣的性质,如高刚度,紫外线稳定性,清晰和光泽的饰面。然而,由于其脆性,PLA的应用受到限制。通过加强纤维和填料,可以改善PLA的工程和热性能。木质纤维素或天然纤维,如黄麻,大麻,竹,剑麻和木材纤维可以用作增强。通过使用天然纤维,可以生产非常生物粘合的复合材料。在本研究中,萃取来自Melia Dubia木材的短纤维并用作PLA生物聚合物基质的增强物。使用拉伸和弯曲试验获得开发复合材料的表征。复合材料的拉伸试验模拟是使用Altair Hypermesh,有限元(FE)预处理器和LS-DYNA进行显式FE解决者进行的。 MAT_01,LS-DYNA中的弹性材料模型用于模拟行为。此外,已经探索了使用开发的复合材料的根训练器的设计。根教训练器是辅助苗圃幼苗的辅助。使用开发的综合制作的根训练器具有生物降解性和生态友好性的优势。

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