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基于熵失效准则的CFRP正交层合板疲劳损伤累积的数值与实验研究

Numerical and Experimental Studies for Fatigue Damage Accumulation of CFRP Cross-Ply Laminates Based on Entropy Failure Criterion.

作者信息

Deng Huachao, Mochizuki Asa, Fikry Mohammad, Abe Shun, Ogihara Shinji, Koyanagi Jun

机构信息

Department of Materials Science and Technology, Tokyo University of Science, Tokyo 125-8585, Japan.

Department of Mechanical Engineering, Tokyo University of Science, Chiba 278-8510, Japan.

出版信息

Materials (Basel). 2022 Dec 31;16(1):388. doi: 10.3390/ma16010388.

Abstract

The transverse cracking behavior of a carbon-fiber-reinforced plastic (CFRP) cross-ply laminate is investigated using a fatigue test and an entropy-based failure criterion in this study. The results of fatigue experiments show that the crack accumulation behavior depends on the cyclic number level and frequency, in which two obvious transverse cracks are observed after 10 cyclic loads and 37 transverse cracks occur after 10 cycles. The final numbers of transverse cracks decrease from 29 to 11 when the load frequency increases from 5 Hz to 10 Hz. An entropy-based failure criterion is proposed to predict the long-term lifetime of laminates under cyclic loadings. The transverse strength of 90° ply is approximated by the Weibull distribution for a realistic simulation. Progressive damage and transverse cracking behavior in CFRP ply can be reproduced due to entropy generation and strength degradation. The effects of stress level and load frequency on the transverse cracking behavior are investigated. It is discovered that, at the edge, the stress σ + σ that is a dominant factor for matrix tensile failure mode is greater than the interior at the first cycle load, and as stress levels rise, a transverse initial crack forms sooner. However, the initial transverse crack initiation is delayed as load frequencies increase. In addition, transverse crack density increases quickly after initial crack formation and then increases slowly with the number of load cycles. The proposed method's results agree well with those of the existing experimental method qualitatively. In addition, the proposed entropy-based failure criterion can account for the effect of load frequency on transverse crack growth rate, which cannot be addressed by the well-known Paris law.

摘要

本研究采用疲劳试验和基于熵的失效准则,对碳纤维增强塑料(CFRP)正交层合板的横向开裂行为进行了研究。疲劳试验结果表明,裂纹累积行为取决于循环次数水平和频率,其中在10次循环加载后观察到两条明显的横向裂纹,在10⁴次循环后出现37条横向裂纹。当加载频率从5Hz增加到10Hz时,横向裂纹的最终数量从29条减少到11条。提出了一种基于熵的失效准则,以预测层合板在循环载荷下的长期寿命。通过威布尔分布近似90°层的横向强度,以进行实际模拟。由于熵的产生和强度退化,可以再现CFRP层中的渐进损伤和横向开裂行为。研究了应力水平和加载频率对横向开裂行为的影响。发现在边缘处,作为基体拉伸破坏模式主导因素的应力σ + σ在第一个循环加载时大于内部,并且随着应力水平的升高,横向初始裂纹形成得更早。然而,随着加载频率的增加,初始横向裂纹的萌生会延迟。此外,横向裂纹密度在初始裂纹形成后迅速增加,然后随着加载循环次数的增加而缓慢增加。所提出方法的结果与现有实验方法的结果在定性上吻合良好。此外,所提出的基于熵的失效准则可以考虑加载频率对横向裂纹扩展速率的影响,这是著名的巴黎定律无法解决的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/032c/9821932/1b6f4f2788d6/materials-16-00388-g001.jpg

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