Ye Yu, Yang Zixin, Qu Dianwei, Hu Bingyin, Li Lei
Key Laboratory of High Efficiency and Clean Mechanical Manufacture (Ministry of Education), School of Mechanical Engineering, Shandong University, Jinan 250061, China.
Shandong Wuzheng Group Co., Ltd., Rizhao 262300, China.
Polymers (Basel). 2025 Apr 16;17(8):1076. doi: 10.3390/polym17081076.
This paper performs orthotropic constitutive modeling for short carbon fiber-reinforced polyetheretherketone (CF-PEEK) composites fabricated using material extrusion 3D printing technology. A variety of specimens for tensile, compressive, and shear tests are 3D printed under different deposition path patterns. The related experimental results disclose the strong directional mechanical properties, including tensile/compressive modulus and strength. The Tsai-Wu failure criterion is also developed based on the experimental data. The tensile-compressive behavior models of different orthotropic materials were constructed by importing the experimental data into COMSOL, followed by a compression simulation of the S-shaped specimen. The experimental results of the S-shaped compression test were compared with the COMSOL-based simulation analysis, which validated the effectiveness of the Tsai-Wu failure prediction. The predicted failure timings, locations and load-displacement curves all show a good agreement with experimental observations. Furthermore, the Tsai-Wu failure index is incorporated as a stress constraint in structural topology optimization, showing the effect of significantly reduced stress concentration. These findings and data will be supportive for the design and optimization of 3D printed CF-PEEK composites.
本文对采用材料挤出3D打印技术制造的短碳纤维增强聚醚醚酮(CF-PEEK)复合材料进行了正交各向异性本构建模。在不同的沉积路径模式下3D打印了用于拉伸、压缩和剪切试验的各种试样。相关实验结果揭示了其显著的方向性力学性能,包括拉伸/压缩模量和强度。还基于实验数据建立了蔡-吴失效准则。通过将实验数据导入COMSOL构建了不同正交各向异性材料的拉伸-压缩行为模型,随后对S形试样进行了压缩模拟。将S形压缩试验的实验结果与基于COMSOL的模拟分析进行了比较,验证了蔡-吴失效预测的有效性。预测的失效时间、位置和载荷-位移曲线均与实验观测结果吻合良好。此外,将蔡-吴失效指数作为应力约束纳入结构拓扑优化中,显示出显著降低应力集中的效果。这些发现和数据将有助于3D打印CF-PEEK复合材料的设计和优化。