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High Performance Thermoplastic Composites:Study on the Mechanical,Thermal,and Electrical Resistivity Properties of Carbon Fiber-Reinforced Polyetheretherketone and Polyethersulphone

机译:高性能热塑性复合材料:碳纤维增强聚醚醚酮和聚醚砜的力学,热学和电阻率特性研究

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摘要

High temperature processing thermoplastic polymers,polyetheretherketone (PEEK) and polyethersulphone (PES),were melt blended with carbon fibers (CFs) to make composites.These composites were investigated for their mechanical,thermal,and electrical properties.Mechanical properties that are expressed in terms of storage modulus,loss,and damping were enhanced with the addition of CFs.Thermal properties were determined by DSC and TGA.These methods help to understand the effects of fiber content and fiber-matrix adhesion in the composites.Composites were also tested for their electrical and thermal conductivity because CFs leave the composites thermally and electrically conductive.CFs enhanced the crystallinity of the PEEK appreciably that in turn influenced thermal conductivity,electrical resistivity,and the stiffness of PEEK/CF (composites of PEEK with CFs).PES/CF (composites of PES with CF) shows a different behavior due to the amorphous nature of PES.The work involves one filler and two different matrices,and so it provides an interesting comparison of how matrix morphology can influence the properties of composites.
机译:将高温加工的热塑性聚合物,聚醚醚酮(PEEK)和聚醚砜(PES)与碳纤维(CFs)熔融共混以制备复合材料。研究了这些复合材料的机械,热和电性能。 CFs增强了储能模量,损耗和阻尼性能。通过DSC和TGA测定了热学性能。这些方法有助于了解纤维含量和纤维对基质的粘附性的影响。由于CFs使复合材料保持导热和导电性,因此具有导电性和导热性.CFs显着增强了PEEK的结晶度,进而影响了PEEK / CF的导热率,电阻率和刚度(PEEK与CFs的复合材料)。 (PES与CF的复合材料)由于PES的无定形性质而表现出不同的行为,这项工作涉及一种填充剂和两种填充剂不同的基质,因此可以对基质形态如何影响复合材料的性能进行有趣的比较。

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