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Optimisation of mechanical properties of bamboo fibre reinforced-PLA biocomposites

机译:竹纤维增强PLA生物复合材料力学性能优化

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The majority of the raw materials that have been widely used in industries are petroleum-based. Growing environmental awareness, the depletion of fossil fuels, and climate change are the key drivers to seek more ecologically friendly materials, such as natural fibres to replace synthetic fibres in polymeric composite. Among the natural fibres available, bamboo fibre has relatively high strength. Poly (lactic) acid (PLA), one of the well-known biopolymers, has been used as a matrix in order to produce totally biodegradable biocomposites. In this study, bamboo fibres were compounded with PLA by a twin screw extruder. The bamboo fibre reinforced PLA composites were then manufactured via the compression moulding method. The influences of screw speed and die temperature during extrusion on the mechanical properties, the tensile and flexural of the biocomposites, were studied. The effects of fibre content and fibre length were also investigated. Taguchi experimental design approach was adopted to determine the optimum set of conditions to achieve the "best" mechanical properties of the composites. Tensile and flexural properties were characterised based on the D638-10 and D790-10 standards, respectively. It was observed that the fibre aspect ratio and fibre content significantly affected the mechanical performance of bamboo fibres reinforced PLA composites.
机译:广泛应用于行业的大部分原材料是石油基础的。不断增长的环境意识,化石燃料的消耗以及气候变化是寻求更生态的友好材料的关键障碍,例如天然纤维以取代聚合物复合材料中的合成纤维。在可用的天然纤维中,竹纤维具有相对高的强度。聚(乳酸)酸(PLA)是众所周知的生物聚合物之一已被用作基质以产生完全可生物降解的生物复合材料。在该研究中,通过双螺杆挤出机用PLA混合竹纤维。然后通过压缩成型方法制造竹纤维增强PLA复合材料。研究了螺丝速度和模芯温度在挤出过程中的影响,研究了生物复合材料的力学性能,拉伸和弯曲。还研究了纤维含量和纤维长度的影响。采用Taguchi实验设计方法来确定实现复合材料的“最佳”机械性能的最佳条件。基于D638-10和D790-10标准,表征了拉伸和弯曲性能。观察到纤维纵横比和纤维含量显着影响了竹纤维增强PLA复合材料的机械性能。

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