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首页> 外文期刊>Composites Science and Technology >Influence of feeding conditions in twin-screw extrusion of PP/MWCNT composites on electrical and mechanical properties
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Influence of feeding conditions in twin-screw extrusion of PP/MWCNT composites on electrical and mechanical properties

机译:PP / MWCNT复合材料双螺杆挤出中进料条件对电气和机械性能的影响

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摘要

The influence of feeding conditions of multiwalled carbon nanotube (MWCNT) materials, namely Baytu bes~(R) C150P and Nanocyl™ NC7000, into polypropylene (PP) was investigated with respect to achieving suitable nanotube dispersion, high electrical conductivity, and good mechanical properties. Both MWCNT materials were fed at selected concentrations either in the hopper of the twin-screw extruder or using a side feeder under otherwise identical extrusion conditions (rotation speed, throughput, temperature profile) using a Berstorff ZE 25 twin-screw extruder. Afterwards, injection molding was performed under identical conditions. The results indicate that the more compact Baytubes~(R) C150P agglomerates should be added into the hopper, as the dispersion assessed by light microscopy is better, electrical resistivities measured on compression and injection molded samples are lower, and elastic modulus, yield strength and impact strength are higher as compared to side feeding. On the other hand, for the more loosely packed Nanocyl~(IM) NC7000 agglomerates, addition using the side feeder leads to better dispersion, lower electrical resistivity, and higher mechanical properties.
机译:为了获得合适的纳米管分散性,高电导率和良好的机械性能,研究了多壁碳纳米管(MWCNT)材料Baytu bes〜(C150P)和Nanocyl™NC7000进料到聚丙烯(PP)中的影响。 。将两种MWCNT材料以选定的浓度进料到双螺杆挤出机的料斗中,或使用侧进料器在其他相同的挤出条件(转速,生产量,温度曲线)下使用Berstorff ZE 25双螺杆挤出机进料。之后,在相同条件下进行注射成型。结果表明,应将更紧凑的Baytubes®C150P附聚物添加到料斗中,因为通过光学显微镜评估的分散性更好,在压缩和注塑样品上测得的电阻率更低,并且弹性模量,屈服强度和与侧面进料相比,冲击强度更高。另一方面,对于包装较松散的Nanocyl〜(IM)NC7000团聚物,使用侧进料器添加可导致更好的分散性,更低的电阻率和更高的机械性能。

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