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Melt rheology and extrudate swell properties of talc filled polyethylene compounds

机译:滑石粉填充聚乙烯化合物的熔体流变学和挤出物溶胀性能

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摘要

An experimental study of high-density polyethylene (HDPE) composites filled with talc (0–15 wt.%) was carried out to investigate the rheological properties. The apparent melt viscosity, melt density, and die-swell ratio ( ) of the composites were measured at constant shear stress and constant shear rate by using a melt flow indexer and capillary rheometer. The experimental conditions were set to a temperature range from 190 to 220 °C for both apparatuses whereas a load range from 5 to 12.16 kg was selected for melt flow indexer and shear rate range from 1 to 10000 s for capillary rheometer. The initial study showed that the talc particulates did not influence the melt viscosity compared with the neat HDPE but decreased the elasticity of the polymer system. The HDPE/talc systems obeyed power-law model in shear stress–shear rate variations and were shear thinning, meanwhile, the die-swell increased with an increased wall shear rate and shear stress. The melt density of the composites increased linearly with an increase of the filler weight fraction and decreased with the increase of the testing temperature. The talc-HDPE composites showed compressible in the molten state.
机译:对填充了滑石粉(0-15 wt。%)的高密度聚乙烯(HDPE)复合材料进行了实验研究,以研究其流变性能。通过使用熔体流动指数仪和毛细管流变仪,在恒定的剪切应力和恒定的剪切速率下,测量了复合材料的表观熔体粘度,熔体密度和模头膨胀率()。两种设备的实验条件均设定为190至220°C的温度范围,而熔体流动指数仪的负荷范围选择为5至12.16 kg,毛细管流变仪的剪切速率范围为1至10000 s。初步研究表明,与纯HDPE相比,滑石颗粒不会影响熔体粘度,但会降低聚合物体系的弹性。 HDPE /滑石系统在剪切应力-剪切速率变化中服从幂律模型,并且剪切变稀,同时,模头膨胀随着壁剪切速率和剪切应力的增加而增加。复合材料的熔体密度随填料重量分数的增加而线性增加,随测试温度的增加而线性下降。滑石-HDPE复合材料在熔融状态下显示出可压缩性。

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