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Shear effect in beta-phase induction of polypropylene in a single screw extruder

机译:单螺杆挤出机中聚丙烯β相诱导中的剪切效应

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摘要

In this work, we investigated the effect of four different configurations at the exit of a single-screw extruder on the induction of beta phase in PP for four different rotational speeds. The configuration of a breaker plate with 120 orifices of 1-mm diameter and 7-mm length each, give the highest content of beta-phase (56.92%), for a screw rotational speed of 20 rpm. It was due to the shear caused separation of the melt when it passes through the orifices of the breaker plate. The breaker plate of configuration 4 (breaker plate with the greatest number of orifices) provided the largest number of contacts between the melt and the orifice walls resulting in chain alignment. The results show that the beta-phase can be induced in the polymer without any further additives, especially without any nucleating agents, but rather by using a special breaker plate configuration at the exit of the single-screw extruder. The skin-core structure of the polymer was only developed with one type of extruder configuration.
机译:在这项工作中,我们研究了在四种不同转速下,单螺杆挤出机出口处四种不同构型对PP中β相诱导的影响。带有120个直径为1毫米,长度为7毫米的孔的破碎板的构造,在20 rpm的螺杆转速下,β相含量最高(56.92%)。这是由于剪切力导致熔体在穿过破碎板的孔口时分离。构造4的隔板(具有最大数量的孔的隔板)在熔体和孔壁之间提供最大数量的接触,从而导致链对准。结果表明,无需任何其他添加剂(尤其是没有任何成核剂),而是通过在单螺杆挤出机出口处使用特殊的破碎板配置,即可在聚合物中诱导β相。聚合物的皮-芯结构仅用一种类型的挤出机构型形成。

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