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Processing of PAEK-graphite fabric composites - Pros and cons of film technique over powder sprinkling technique

机译:PAEK-石墨织物复合材料的加工 - 粉末洒水技术薄膜技术的优缺点

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Fabric-(BD-bi-directionally) reinforced high performance polymer composites are well-known for their exceptional mechanical, thermal and tribological properties. However, their processing is generally challenging, especially for specialty polymers like Polyetheretherketone (PEEK), Polyaryletherketone (PAEK) etc. mainly because of unavailability of a right kind of solvent which restricts exploitation of solution impregnation technique. Having very high melting points along with high melt-viscosity and high oxidation tendency, the possibility of melt-impregnation also gets eliminated. Furthermore, unavailability in fibrous form restricts the processing possibility by commingling technique. The possible options left for developing such composites perhaps are by film-stacking and powder-sprinkling techniques although the major issue of non-wetting at crossover points remains unaddressed. This paper reports on the maiden effort on developing, characterizing and in depth performance analysis of graphite fabric reinforced PAEK composites. Powder-sprinkling and film-stacking techniques were employed in this work by maintaining identical processing parameters and fabric amount. The comparative performance evaluation led to a conclusion that film-stacking technique excelled in almost all performance properties barring thermal conductivity and thermo-mechanical performance. The performance analysis was based on various techniques such as thermal-conductivity, field emission scanning electron microscopy (FESEM) on polished cross-sections, thermal and thermo-mechanical analysis, mechanical testing, micro-computed tomography, abrasive wear studies etc.
机译:织物 - (BD-Bi方向)增强的高性能聚合物复合材料是众所周知的,其出色的机械,热和摩擦学性质。然而,它们的加工通常具有挑战性,特别是对于聚醚醚酮(PEEK),聚芳基酮(PAEK)等的特种聚合物主要是因为适合种类的溶剂的不可用,这限制了溶液浸渍技术的开发。具有高熔点以及高熔融粘度和高氧化倾向,熔融浸渍的可能性也被消除。此外,纤维形式的不可用性通过混合技术限制了处理可能性。留下这种复合材料的可能选择可能是通过膜堆叠和粉末喷洒技术,尽管在交叉点处的非润湿性的主要问题保持不变。本文报告了石墨织物增强PAEK复合材料的开发,表征和深度性能分析的初步努力。通过维持相同的处理参数和织物量,在这项工作中使用粉末喷洒和膜堆叠技术。比较绩效评估导致了结论,即几乎所有性能特性禁止导热性和热机械性能的膜堆叠技术表现出色。性能分析基于各种技术,例如导热率,现场发射扫描电子显微镜(FESEM)在抛光的横截面,热和热机械分析,机械测试,微计算机断层扫描,磨料磨损研究等上。

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