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首页> 外文期刊>American Journal of Chemical Engineering >Enhancement of High-Density Polyethylene Properties by Impregnation with Inorganic Alumina Filler
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Enhancement of High-Density Polyethylene Properties by Impregnation with Inorganic Alumina Filler

机译:通过无机氧化铝填料的浸渍增强高密度聚乙烯的性能

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The influence of filler size and content on the mechanical and rheological properties (thermal conductivity, impact strength, hardness and melt flow index (MFI) of Alsub2/subOsub3/sub/high-density polyethylene (HDPE) composites have been studied. Concentration of alumina was varied up to 30% by weight. The composites were prepared using a two-roll mill and then test specimens were prepared by injection molding. Thermal conductivity, hardness, impact strength and melt flow rate of the composites increased with decreased particle sizes and increased particle content with exceptions at certain concentrations due to non-uniform distributions of particles and agglomerates formed by the particles. As an example, the best integrated thermal conductivity was shown by a 75 micron-Alsub2/subOsub3/sub/HDPE composite at 15% wt. alumina content, while the 212 micron- Alsub2/subOsub3/sub/HDPE composite at 20 wt.% alumina content. For the same alumina content of 15% concentration by weight out of the three particle sizes. 75, 212 and 850 microns, the 75 micron-Alsub2/subOsub3/sub/HDPE composite gave the highest thermal conductivity, which was nearly 50% higher than that of pure HDPE. Enhancement in impact strength and Hardness Rockwell were up to 300% and 400% as compared to the pure HDPE respectively. The Alsub2/subOsub3/sub with small particle size is generally more efficient for the enhancement of the impact strength.
机译:填料尺寸和含量对Al 2 O 3 / high-的力学和流变性能(导热系数,冲击强度,硬度和熔体流动指数(MFI))的影响对高密度聚乙烯(HDPE)复合材料进行了研究,氧化铝的浓度最高可变化30%(重量),然后使用两辊轧机制备复合材料,然后通过注塑成型制备试样,从而获得导热系数,硬度,冲击强度和复合材料的熔体流动速率随颗粒尺寸的减小和颗粒含量的增加而增加,但由于颗粒和颗粒形成的团聚物的分布不均匀,在某些浓度下例外,例如,最佳的综合热导率显示为75微米-Al 2 O 3 / HDPE复合材料的氧化铝含量为15%wt,而212微米的Al 2 O 3 < / sub> / HDPE复合材料的氧化铝含量为20 wt。%(对于相同的氧化铝含量为15%)三种粒径中的重量离子。 75微米的Al 2 O 3 / HDPE复合材料分别具有75、212和850微米的导热率,比纯HDPE高出近50%。与纯HDPE相比,冲击强度和洛氏硬度的提高分别高达300%和400%。小粒径的Al 2 O 3 通常对于提高冲击强度更有效。

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