Influence of fibre curvature and orientation on the mechanical properties of injected irregular short hemp fibres reinforced polypropylene

Quentin C. P. Bourgogne
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Abstract

This paper presents a numerical study of the influence of geometry and orientation of fibres on the mechanical behaviour of a hemp fibre reinforced polypropylene, obtained with injection. Tensile tests and multiplexing mode Dynamic Mechanical Analysis (DMA) were carried out in order to determine the mechanical behaviour of the neat and reinforced material. A numerical homogenization was then performed with the elastic hemp fibres for aligned and random orientation as well as a reconstructed microstructure obtained with injection simulation to correlate with tensile tests. The simulations were performed for sphero-cylinder and curved fibres and the results were compared to FFT results obtained directly on micro-tomography images as well as experimental data. The results showed that the complex geometry of the fibres can be approximated with a random 3D orientation of sphero-cylinder shaped fibres, a reasonable hypothesis leading to a simplification of the problem and an easier process of design of parts made with such materials.
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纤维曲率和取向对注射不规则短麻纤维增强聚丙烯机械性能的影响
本文介绍了一项数值研究,研究纤维的几何形状和取向对通过注射获得的麻纤维增强聚丙烯的机械性能的影响。为了确定纯材料和增强材料的机械性能,进行了拉伸试验和多路复用模式动态机械分析(DMA)。然后,对有序和无序取向的弹性麻纤维以及通过注射模拟获得的重建微观结构进行了数值均质化,以便与拉伸试验相关联。模拟针对球形圆柱体和弯曲纤维进行,并将结果与直接在显微断层扫描图像上获得的 FFT 结果以及实验数据进行了比较。结果表明,纤维的复杂几何形状可以用球状圆柱形纤维的随机三维取向来近似,这种合理的假设简化了问题,并简化了使用此类材料制造部件的设计过程。
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