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Analysis of mixing during melt-melt blending in twin screw extruders using reactive polymer tracers

机译:使用反应性聚合物示踪剂分析双螺杆挤出机熔融共混过程中的混合

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摘要

Mixing during melt-melt blending of segregated polypropylene melt streams in a co-rotating twin screw extruder was experimentally investigated. The mixing limited reaction between two polymer reactive tracers, which are terminally functionalzied polyolefin oligomers, was used to determine the mixing performance of a kneading block section. The selected functional groups were succinic anhydride and a primary amine, and Fourier-Transform Infrared Spectrometry (FT-IR) was used to determine the anhydride conversion. In the absence of interfacial tension, the reaction conversion was directly related to the amount of interfacial area generated. Experiments were completed to study the effects of operating conditions, kneading block design, and polymer material properties. The screw speed effect was observed to be non-linear because of competing contributions from shear rate, residence time, channel fill, and viscous heating. The mixing performance of kneading blocks backed by a reverse conveying element was observed to follow the trend of: forward>reverse>neutral. For each kneading block design, the mixing performance decreased with an increase in polymer viscosity.
机译:实验研究了在同向旋转双螺杆挤出机中熔融熔融共混分离的聚丙烯熔体流的混合过程。两个聚合物反应性示踪剂之间的混合受限反应是末端官能化的聚烯烃低聚物,用于确定捏合段的混合性能。选择的官能团是琥珀酸酐和伯胺,并使用傅里叶变换红外光谱(FT-IR)确定酸酐的转化率。在没有界面张力的情况下,反应转化率直接与所产生的界面面积有关。已完成实验以研究操作条件,捏合块设计和聚合物材料性能的影响。由于剪切速率,停留时间,通道填充和粘性加热的竞争影响,螺杆速度效应被认为是非线性的。观察到具有反向输送元件支持的捏合块的混合性能遵循以下趋势:正向>反向>中性。对于每种捏合块设计,随着聚合物粘度的增加,混合性能降低。

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