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POLYETHERKETONEKETONE (PEKK), A VERSATILE ULTRA-POLYMER FOR ADDITIVE MANUFACTURING

机译:聚醚酮酮(PEKK),一种用于添加制造的多功能超聚合物

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Polyetherketoneketone (PEKK) is a member of the Polyaryletherketone (PAEK) family of ultra-high performance polymers, known for their excellent mechanical properties, high use temperatures, and superior chemical resistance. PEKK is unique among this family of polymers because it offers a wide melting point range and a slower, tunable crystallization rate, which makes it suitable for a wide range of processing methods. In additive manufacturing, PEKK can be processed by either powder bed fusion or material extrusion techniques, and offers the flexibility to produce either amorphous or semicrystalline parts. This paper will outline several proposed routes to produces semicrystalline PEKK parts via extrusion based additive manufacturing, and relate printing conditions to the development of crystallinity in PEKK parts. We will discuss how computer simulation coupled with an understanding of crystallization kinetics can help predict optimal print conditions and compare these results to actual printed parts. Additionally, the effects of fiber and mineral fillers on the print process and final part will be examined.
机译:聚醚酮酮(PEKK)是聚芳醚酮(PAEK)家族的超高性能聚合物,它们的优异的机械性能,高的使用温度,和优异的耐化学性已知的成员。 PEKK是这个家族的聚合物中是独特的,因为它提供了一个宽的熔点范围和较慢的,可调谐的结晶速率,这使得它适合于宽范围的加工方式。在添加制造,PEKK可以通过粉末床融合或材料挤出技术,并提供被处理的灵活性,以产生无定形的或半结晶的部分。本文将概述几种提议路线来产生通过基于挤出的添加剂制造半结晶PEKK零件,并涉及印刷条件以结晶在PEKK部件的开发。我们将讨论计算机模拟加上结晶动力学的理解如何可以帮助预测最佳的打印条件和比较这些结果与实际打印件。此外,在打印过程和最终部分纤维和矿物填料的影响进行研究。

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