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短玻璃纤维增强聚醚醚酮(PEEK)的压缩性能及本构模型

Compression properties and constitutive model of short glass fiber reinforced poly-ether-ether-ketone (PEEK).

作者信息

Zhang Ruijie, Chen Li, Xie Kai, Liu Kun, Wu Zhilin

机构信息

School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, Jiangsu, China.

出版信息

Sci Rep. 2023 Nov 6;13(1):19206. doi: 10.1038/s41598-023-46078-z.

Abstract

To analyze the deformation behavior of short glass fiber-reinforced poly-ether-ether-ketone (SGFR-PEEK) under various conditions through numerical simulations, it is crucial to construct a constitutive model that can describe its stress-strain behavior over a wide range of strain rates and temperatures. In this study, quasi-static compression tests were conducted on SGFR-PEEK composites with varying mass fractions, and dynamic tests were performed using a Split Hopkinson Pressure Bar to acquire the material's compressive stress-strain response under quasi-static and dynamic conditions. The results indicate that, under compression, the yield stress of SGFR-PEEK composites increases with an augmentation in glass fiber content, rises with increasing strain rate, and decreases with elevated temperature. Based on experimental findings, a modified Johnson-Cook constitutive model was established to characterize the mechanical performance of SGFR-PEEK. In comparison to the traditional Johnson-Cook intrinsic structure model, the modified model takes into account the glass fiber mass fraction as comprehensively as possible and better predicts the material's flow behavior at high strain rates. Finally, this modified constitutive model was implemented in the ABAQUS software using the user-defined subroutine VUMAT to simulate the compression behavior of SGFR-PEEK composites under different loading conditions, and the model was validated. This research provides valuable insights for the practical application of SGFR-PEEK composites in engineering.

摘要

为了通过数值模拟分析短玻璃纤维增强聚醚醚酮(SGFR-PEEK)在各种条件下的变形行为,构建一个能够描述其在广泛应变率和温度范围内应力-应变行为的本构模型至关重要。在本研究中,对不同质量分数的SGFR-PEEK复合材料进行了准静态压缩试验,并使用分离式霍普金森压杆进行动态试验,以获取材料在准静态和动态条件下的压缩应力-应变响应。结果表明,在压缩状态下,SGFR-PEEK复合材料的屈服应力随玻璃纤维含量的增加而增大,随应变率的增加而升高,随温度的升高而降低。基于实验结果,建立了一个改进的Johnson-Cook本构模型来表征SGFR-PEEK的力学性能。与传统的Johnson-Cook本构模型相比,改进后的模型尽可能全面地考虑了玻璃纤维质量分数,并且能更好地预测材料在高应变率下的流动行为。最后,利用用户自定义子程序VUMAT在ABAQUS软件中实现了该改进本构模型,以模拟SGFR-PEEK复合材料在不同加载条件下的压缩行为,并对模型进行了验证。本研究为SGFR-PEEK复合材料在工程中的实际应用提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e3a/10628305/1f121b5bba88/41598_2023_46078_Fig1_HTML.jpg

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