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首页> 外文期刊>Journal of Applied Polymer Science >Effect of Dynamic Shear on the Microcellular Foaming of Polypropylene/High-Density Polyethylene Blends
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Effect of Dynamic Shear on the Microcellular Foaming of Polypropylene/High-Density Polyethylene Blends

机译:动态剪切对聚丙烯/高密度聚乙烯共混物微孔发泡的影响

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摘要

Dynamic shear in the axial direction of a rotor was vertically superposed on the melt flow direction, and its effects on the shear rate and melt strength were investigated theoretically. Polypropylene/high-density polyethylene blends were microcellularly foamed with different vibration parameters. The experimental results were compared with those of a theoretical analysis, and the effects of dynamic shear on the foamability and ultimate cell structure were analyzed in detail. The theoretical results showed that the shear rate and melt strength increased with an increase in the vibration amplitude and frequency. The enhanced melt strength could effectively restrict cell growth, prevent cell rupture, and improve foamability. The experimental results showed that the cell orientation decreased and the cell structure was improved when axial dynamic shear induced by rotor vibrations was superposed on the melt flow direction. Furthermore, the cell diameter decreased and the cell density increased with increases in the vibration amplitude and frequency. The experimental results were very consistent with the theoretical analysis.
机译:将转子轴向的动态剪切力垂直叠加在熔体流动方向上,并从理论上研究了其对剪切速率和熔体强度的影响。聚丙烯/高密度聚乙烯共混物以不同的振动参数进行微孔发泡。将实验结果与理论分析进行了比较,并详细分析了动态剪切对发泡性和最终泡孔结构的影响。理论结果表明,剪切速率和熔体强度随着振动幅度和频率的增加而增加。增强的熔体强度可以有效地限制泡孔的生长,防止泡孔破裂,并改善起泡性。实验结果表明,当转子振动引起的轴向动态剪切叠加在熔体流动方向上时,孔道取向减小,孔道结构得到改善。此外,随着振动幅度和频率的增加,孔直径减小并且孔密度增加。实验结果与理论分析非常吻合。

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