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Preparation and Properties of Polypropylene/Vapor Grown Carbon Fiber Composite Monofilaments by Melt Compounding

机译:熔融共混制备聚丙烯/气相生长碳纤维复合单丝及其性能

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摘要

Polypropylene (PP)/vapor grown carbon fiber (VGCF) composites by melt compounding using a counter-rotating twin screw extruder were prepared, then by melt spinning PP/VGCF monofilaments with a high draw ratio of 9 were obtained. The properties and structure of the PP/VGCF composites and monofilaments were characterized by tensile testing, differential scanning calorimetry (DSC), X-ray diffraction (XRD), and scanning electron microscopy (SEM). Increasing the aspect and draw ratios resulted in an increase in the tensile strength of PP/VGCF monofilaments. The improvement of the tensile strength was observed for the addition of a small amount of 1 wt%, however, it was not observed for the addition of 3 wt%. Although the composites continued to be aggregates, VGCF was found to disperse in the PP matrix and increased the nucleation speed of the composite monofilaments, thereby leading to an increase in the crystallization rate of the as-spun monofilament owing to nanoscale structures formed from VGCF by drawing.
机译:制备聚丙烯(PP)/气相生长碳纤维(VGCF)复合材料,方法是使用反向旋转双螺杆挤出机进行熔融混纺,然后通过熔融纺丝制备高拉伸比为9的PP / VGCF单丝。通过拉伸测试,差示扫描量热法(DSC),X射线衍射(XRD)和扫描电子显微镜(SEM)对PP / VGCF复合材料和单丝的性能和结构进行了表征。长宽比和拉伸比的增加导致PP / VGCF单丝的拉伸强度增加。少量添加1重量%时,观察到拉伸强度的提高,但是,添加3重量%时,未观察到拉伸强度的提高。尽管复合材料仍然是聚集体,但发现VGCF分散在PP基体中,并提高了复合单丝的成核速度,由于VGCF由纳米碳管形成的纳米级结构导致初纺单丝的结晶速率增加。画画。

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