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Investigation of Melt Flow Index and Impact Strength of Foamed LLDPE for Rotational Moulding Process

机译:熔融流动指数及泡沫模塑工艺冲击强度的研究

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Rotational molding of foamed polyethylene has increasingly become an important process in industry because of its thicker walls, low sound transfer, high stiffness and good thermal insulation. However, the foaming process of polyethylene during rotational molding has not been well studied. The focus of thisarticle is to assess the rotomoldability of foamed polyethylene and to investigate how LLDPE foam influence the process of rotational molding and the final product quality. Rotational molding experiments are carriedout in a laboratory scale biaxial machine. Impact tests and melt flow property are performed on the rotationally molded parts. It is found that the MFI and impact strength of rotomoulded product increases as the foam percentage increases up to 6% after which both decreases. Therefore it is concluded that 6% of foam is the optimum level to obtain sufficient melt flow index and better impact strength.
机译:由于其较厚的墙壁,低声传递,高刚度和良好的隔热,泡沫聚乙烯的旋转成型越来越多地成为工业中的重要过程。然而,在旋转模塑过程中,聚乙烯的发泡过程并未得到很好的研究。本质的焦距是评估发泡聚乙烯的旋转性,并研究LLDPE泡沫如何影响旋转模塑过程和最终产品质量。旋转模塑实验在实验室规模的双轴机中脱落。在旋转成型部件上进行冲击试验和熔体流动性。结果发现,随着泡沫百分比的增加,旋转产品的MFI和冲击强度增加到6%之后,两者都降低。因此,得出结论,6%的泡沫是获得足够熔体流动指数和更好的冲击强度的最佳水平。

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