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体外评价聚醚醚酮和碳纤维增强聚醚醚酮的分层阻力。

In vitro evaluation of delamination resistance of PEEK and CFR-PEEK.

机构信息

Division of Medical Devices, National Institute of Health Sciences, Kawasaki, Kanagawa Prefecture, Japan.

出版信息

Proc Inst Mech Eng H. 2022 Feb;236(2):279-285. doi: 10.1177/09544119211042992. Epub 2021 Aug 25.

DOI:10.1177/09544119211042992
PMID:34431397
Abstract

Poly-ether-ether-ketone (PEEK) and carbon fiber reinforced PEEK as orthopedic implant materials exhibit excellent material properties. Although delamination of PEEK materials has been reported in knee joint wear research, the delamination resistance behavior remains unclear. In this study, the delamination resistance of PEEK materials was investigated; these materials were compared to ultra-high molecular weight polyethylene (UHMWPE). The results of a ball-on-flat type delamination test indicated that the PEEK materials underwent delamination considerably earlier than UHMWPE, and the contact area of the PEEK materials was smaller than that of UHMWPE. Moreover, the indentation modulus, hardness, and coefficient of friction were higher for PEEK materials than for UHMWPE. The reduced tendency of PEEK materials to undergo deformation to mitigate stress concentration at low conformity contact conditions contributed to their inferior delamination resistance compared to that of UHMWPE. The delamination resistance of the PEEK materials was equivalent to that of degraded UHMWPE, which highlights the risk of delamination of PEEK implants in a clinical context. Consequently, when using PEEK materials as an implant component loaded at a low conformity contact condition, the material selection and component design must be carefully considered. Overall, the results of this study can help guide the future development of PEEK-based implants.

摘要

聚醚醚酮(PEEK)和碳纤维增强 PEEK 作为骨科植入物材料具有优异的材料性能。尽管在膝关节磨损研究中已经报道了 PEEK 材料的分层现象,但分层阻力行为仍不清楚。在这项研究中,研究了 PEEK 材料的分层阻力;将这些材料与超高分子量聚乙烯(UHMWPE)进行了比较。平面球型分层试验的结果表明,PEEK 材料比 UHMWPE 更早分层,而且 PEEK 材料的接触面积比 UHMWPE 小。此外,PEEK 材料的压痕模量、硬度和摩擦系数均高于 UHMWPE。在低贴合接触条件下,PEEK 材料的变形趋势降低,有助于减轻应力集中,从而导致其分层阻力低于 UHMWPE。PEEK 材料的分层阻力与降解的 UHMWPE 相当,这凸显了 PEEK 植入物在临床环境中分层的风险。因此,当在低贴合接触条件下作为植入物组件使用 PEEK 材料时,必须仔细考虑材料选择和组件设计。总的来说,本研究的结果可以帮助指导未来基于 PEEK 的植入物的开发。

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