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Rheological Behavior of (Short) Carbon Fiber/Thermoplastic Composites. Part I: The Influence of Fiber Type, Processing Conditions and Level fo Incorporation

机译:(短)碳纤维/热塑性复合材料的流变行为。第一部分:纤维类型,加工条件和掺入水平的影响

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摘要

The aim of this work is to understand the influence of type of (short) carbon fibers, processing conditions and fiber incorporation level on the rheological behavior of carbon fiber/polypropylene (PP) composites. For this purpose, two types of fibers (sub-micron Vapor Grown Carbon Fibers, VGCF, and ex-PAN, PAN), three different extruder screw geometries and three different fiber incorporation contents were studied. The rheological characterization was performed by means of capillary and rotational rheometry, results being presented and discussed in terms of reinforcing capability in both shear (steady and oscillatory) and extensional flows. The results show that VGCF have a generally higher influence on the rheological behavior of the composites than the PAN fibers. However, because of their higher intrinsic Rigidity, PAN fibers give rise to composites with better mechanical properties that the VGCF ones. It is also shown that the influence of the screw geometry on fiber damage and, consequently, on the behavior of the composites, is weak, fiber degradation occurring mainly in the compounding stae. The incorporation level has the expected influence, i.e., it produces gradual changes in all the properties considered in this study.
机译:这项工作的目的是了解(短)碳纤维的类型,加工条件和纤维掺入水平对碳纤维/聚丙烯(PP)复合材料的流变行为的影响。为此,研究了两种类型的纤维(亚微米级气相生长碳纤维,VGCF和ex-PAN,PAN),三种不同的挤出机螺杆几何形状和三种不同的纤维掺入含量。通过毛细管和旋转流变仪进行流变学表征,结果根据剪切(稳态和振荡)和扩展流动的增强能力进行了介绍和讨论。结果表明,VGCF对复合材料的流变行为的影响通常比PAN纤维高。但是,由于PAN纤维的固有刚度较高,因此其复合材料的机械性能优于VGCF。还显示出,螺杆几何形状对纤维损伤以及因此对复合物的性能的影响是微弱的,纤维降解主要发生在混炼场中。掺入水平具有预期的影响,即它会导致本研究中考虑的所有特性逐渐发生变化。

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