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Cold Spray Technology to Promote Conductivity of Short Carbon Fiber Reinforced Polyether-Ether-Ketone (PEEK)

机译:冷喷涂技术促进短碳纤维增强聚醚 - 醚 - 酮(PEEK)的电导率

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Recent studies showed that cold spray is a suitable way to produce metallic coatings on non-metallic surfaces such as polymers and composites for engineering applications. Mechanical bonding and particle anchoring process onto these substrates have not been totally understood yet. This study is focused on the creation of conductive coatings by cold spray onto short carbon fiber reinforced PEEK. For the requirements of the industrial application, the deposit should be able to tolerate both electrostatic and electric currents (higher than 10A). Because of their high conductivity, aluminium and copper powder seemed to be the best candidate materials. To promote adhesion and coating build up, copper-zinc and copper-PEEK mixed powders were also tested. A correlation between experimental and numerical tests has been adopted to assess and improve the possibilities of this material coupling. Both low pressure and high-pressure cold spray equipment were used for the spraying. Since polymer matrix-based composites are thermosensitive materials, it was necessary to develop a computational fluid-dynamics tool to investigate the interaction of the hot gas on the substrate and the correlation with the deposition "process. A series of finite element simulations of single and multi-particle impacts onto local structures of the composite, as observed from SEM images of the specimens, is on-going. A classical pull-off test of the specimen will be adopted to collect data about coating adhesion strength. Finally, the four points measurement by Van der Pauw method will be used to assess the conductivity of specimens for different powders and coating thicknesses.
机译:最近的研究表明,冷喷涂是产生在非金属表面,例如用于工程应用的聚合物和复合材料的金属涂层以合适的方式。机械粘结和颗粒锚固过程到这些基板还没有被完全理解仍然。该研究是通过冷喷涂集中在创建导电涂层到短碳纤维增强PEEK。对于工业应用的要求,存款应该能够容忍两个静电和电流(比10A更高)。由于它们的高导电性的,铝和铜粉末似乎是最佳的候选材料。以促进粘附和涂布积聚,铜 - 锌和铜 - PEEK混合粉末也进​​行了测试。实验和数值测试之间的相关性已被采用,以评估和改善这种材料耦合的可能性。低压和高压冷喷涂设备被用于喷涂。由于聚合物基体产生的复合材料是热敏性材料,因此有必要开发一种计算流体动力学工具来研究热气体的基板上的相互作用,并与沉积的相关性“的过程。一系列的单个有限元模拟的和多粒子撞击到所述复合材料的局部结构,因为从样品的SEM图像中观察到,是正在进行的。一个经典的拉脱试样的测试将被采用到大约的涂层粘合强度收集数据。最后,四个点通过范德堡法测定将用于评估的标本进行不同的粉末和涂层厚度的导电性。

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