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Particulate reinforced rotationally moulded polyethylene composites - Mixing methods and mechanical properties

机译:颗粒增强的旋转模塑聚乙烯复合材料-混合方法和机械性能

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摘要

In order to investigate the mechanical properties of particulate reinforced polyethylene when using rotational moulding process, different mathematical models are used to predict the tensile properties. A series of micro-sized particles at various volume fractions are used as fillers for Liner Medium Density Polyethylene (LMDPE) to verify those theoretical models. A comparison with the experimental results finds that the theoretical models of Halpin-Tsai-Nielsen and Nicolais-Narkis can be used to predict the tensile moduli and the tensile strengths, respectively, for the paniculate reinforced composites produced by the rotational moulding process when uniform distribution of reinforcement is achieved. The scanning electron microscopic images show that an even distribution of particles within the product wall can be achieved in two ways: direct manual mixing method for bigger sized particles (90-240 mu m) and melt compounding method for smaller particles (6.5-35 mu m). It is also found that with around 2 vol percent of the smallest Spheriglass 5000 beads added by the melt compounding method, the tensile strength remains almost the same and the tensile modulus reaches a 20 percent improvement above that of pure LMDPE.
机译:为了研究颗粒增强聚乙烯在使用滚塑工艺时的机械性能,使用了不同的数学模型来预测拉伸性能。一系列不同体积分数的微米级颗粒用作衬里中密度聚乙烯(LMDPE)的填料,以验证那些理论模型。与实验结果的比较发现,Halpin-Tsai-Nielsen和Nicolais-Narkis的理论模型可以分别用于预测均匀分布时通过旋转模塑工艺生产的颗粒状增强复合材料的拉伸模量和拉伸强度。达到加固效果。扫描电子显微镜图像显示,可以通过两种方式实现产品壁内颗粒的均匀分布:较大尺寸(90-240微米)的直接手动混合方法和较小尺寸(6.5-35微米)的熔融混合方法m)。还发现,通过熔融混合法添加了约2%(体积)的最小Spheriglass 5000珠粒,拉伸强度几乎保持不变,并且拉伸模量比纯LMDPE的拉伸率提高了20%。

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