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3D打印聚醚醚酮(PEEK)试样的层间结合强度

Interlayer bonding strength of 3D printed PEEK specimens.

作者信息

Liaw Chya-Yan, Tolbert John W, Chow Lesley W, Guvendiren Murat

机构信息

Otto H. York Department of Chemical and Materials Engineering, New Jersey Institute of Technology, Newark, NJ 07102, USA.

Department of Materials Science and Engineering, Lehigh University, Bethlehem, PA 18015, USA.

出版信息

Soft Matter. 2021 May 12;17(18):4775-4789. doi: 10.1039/d1sm00417d.

Abstract

Recent advances in extrusion-based filament 3D printing technology enable the processability of high-performance polymers. Poly(ether ether ketone) (PEEK) is an important group of high-performance polymer that has been widely used in aerospace, automotive, and biomedical applications. The interlayer bonding strength of 3D printed PEEK is crucial for load-bearing applications, yet studies on 3D printed PEEK are sparse due to processing challenges. In this study, the three-point flexural test is used to study the interlayer bonding strength of 3D-printed PEEK specimens with respect to the printing process parameters, including nozzle temperature, print speed, layer height, and wait-time. A design of experiment (DOE) approach is developed to study correlations between printing parameters and the end-use properties, including flexural stress (σf) and strain at break (εf), flexural modulus (Ef), and crystallinity (χ). Our results show that the nozzle temperature, layer height, and wait-time significantly affect the interlayer bonding strength, with nozzle temperature being the most influential parameter to enhance interlayer bonding strength indicated by a significant increase in σf, εf, and χ. Thermal annealing post-printing is shown to increase the degree of χ and Ef, yet its effect on interlayer bonding strength is minimal, indicating that the interlayer bonding strength is primarily determined during the printing process. This study demonstrates the use of a three-point flexural test integrated with a versatile and robust DOE approach to study the interlayer bonding strength of PEEK to reduce product development time while improving mechanical properties.

摘要

基于挤出的长丝3D打印技术的最新进展使高性能聚合物的加工成为可能。聚醚醚酮(PEEK)是一类重要的高性能聚合物,已广泛应用于航空航天、汽车和生物医学领域。3D打印PEEK的层间结合强度对于承重应用至关重要,但由于加工挑战,关于3D打印PEEK的研究很少。在本研究中,采用三点弯曲试验来研究3D打印PEEK试样的层间结合强度与打印工艺参数的关系,这些参数包括喷嘴温度、打印速度、层高和等待时间。开发了一种实验设计(DOE)方法来研究打印参数与最终使用性能之间的相关性,这些性能包括弯曲应力(σf)和断裂应变(εf)、弯曲模量(Ef)和结晶度(χ)。我们的结果表明,喷嘴温度、层高和等待时间对层间结合强度有显著影响,其中喷嘴温度是提高层间结合强度最具影响力的参数,σf、εf和χ的显著增加表明了这一点。打印后进行热退火可提高χ和Ef的程度,但其对层间结合强度的影响最小,这表明层间结合强度主要在打印过程中确定。本研究展示了使用三点弯曲试验与通用且强大的DOE方法相结合来研究PEEK的层间结合强度,以减少产品开发时间并同时改善机械性能。

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