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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Melting of Polymer Blends in Co-rotating Twin Screw Extruders
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Melting of Polymer Blends in Co-rotating Twin Screw Extruders

机译:同向双螺杆挤出机中聚合物共混物的熔融

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Experimental studies of the melting process in extruders generally involve a high outlay and can only be performed with cer-tain restrictions, both in respect of the method employed and with regard to the evaluation of the results.This part of the work describes one possible way of studying the melting of binary incompatible polymer combinations.The method described makes it possible to estimate the degree of melting of the two components over the length of the screws of the twin screw extruder.Experimental studies were performed of polypropy-lene/polyamide 6 (PP/PA6) blends containing low weight contents of the disperse PA 6 phase.In order to verify the theoretical models set out in Part I, page 124 of this issue,not only were the process conditions of screw speed and throughput varied but also the viscosity ratio.This was achieved by using two different PP grades.In addition,comparable tests were performed on two different sizes of extruders.The tests show that the melting of polymer blends,and parti-cularly the melting of the second component, which melts at a higher temperature,is determined to a significant extent by the screw rotational speed,the throughput,the ratio of the extruder channel depth to granule diameter and also the material combination (viscosity ratio).Comparisons of calculations and experiments show that the melting profiles calculated for different material combinations and process conditions tally well with the experimental studies in overall terms.
机译:挤出机熔融过程的实验研究通常涉及高费用,并且在所采用的方法和结果评估方面都只能在一定的限制下进行。这部分工作描述了一种可能的方法研究二元不相容聚合物组合的熔化。所描述的方法使得可以估计双螺杆挤出机螺杆长度上两种组分的熔化程度。对聚丙烯酰胺/聚酰胺6( PP / PA6)共混物,其中PA 6分散相的重量含量较低。为了验证本期第124页第一部分所述的理论模型,不仅改变了螺杆速度和产量的工艺条件,而且粘度比是通过使用两种不同的PP等级来实现的。此外,对两种不同尺寸的挤出机进行了可比的测试。测试表明聚合物的熔融共混物,尤其是在高温下熔融的第二种组分的熔融程度,在很大程度上取决于螺杆的旋转速度,产量,挤出机通道深度与颗粒直径的比率以及材料组合计算和实验的比较表明,针对不同材料组合和工艺条件计算出的熔融曲线与实验研究总体上吻合良好。

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