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Measurement of the high rate flow properties of filled HDPE melts by capillary rheometer: Effects of the test geometry

机译:用毛细管流变仪测量填充的HDPE熔体的高速流动性能:测试几何形状的影响

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摘要

Capillary rheometry was used for measurement of the high rate steady-state flow properties of micro-filled high-density polyethylene (HDPE) melts, and the effects of the test geometry were investigated. Attention was paid to the influence of the die diameter. The micro-compounds examined had the same filler content (10 vol.% in the melt state), but differed in the nature and geometry of filler (glass beads, discontinuous glass fibres and talc). A die diameter effect on the pressure drop localized at the die entrance was clearly observed for the unfilled HDPE; for the micro-filled melts, this effect was either enhanced or considerably reduced, depending on the type of filler (opposite effects were induced by glass beads and by glass fibres). A die diameter effect on the macroscopic shear viscosity response was noticed only for the melts filled with particles with relatively high aspect ratio (glass fibres and talc platelets).
机译:毛细管流变仪用于测量微填充高密度聚乙烯(HDPE)熔体的高速率稳态流动性能,并研究了测试几何形状的影响。注意模具直径的影响。所检查的微化合物具有相同的填料含量(在熔融状态下为10%(体积)),但填料(玻璃珠,不连续的玻璃纤维和滑石粉)的性质和几何形状有所不同。对于未填充的HDPE,可以清楚地观察到模具直径对位于模具入口处的压降的影响。对于微填充熔体,取决于填充剂的类型,这种作用会增强或显着降低(相反的作用是由玻璃珠和玻璃纤维引起的)。模头直径对宏观剪切粘度响应的影响仅在填充有纵横比相对较高的颗粒(玻璃纤维和滑石片)的熔体中才注意到。

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