Suppr超能文献

采用微观力学方法预测带缺口和无缺口IM7/977-3层合复合材料的极限强度

Prediction of the Ultimate Strength of Notched and Unnotched IM7/977-3 Laminated Composites Using a Micromechanics Approach.

作者信息

Masud Manzar, Kharusi Moosa S M Al, Ali Muhammad Umair, Mubashar Aamir, Hussain Shaik Javeed, Tariq Adnan, Rehman Gulfam Ul, Akhtar Mahmood Hassan, Javeed Shama

机构信息

Computational Mechanics Group, Department of Mechanical Engineering, School of Mechanical and Manufacturing Engineering (SMME), National University of Sciences and Technology (NUST), H-12, Islamabad 44000, Pakistan.

Department of Mechanical Engineering, Capital University of Science and Technology (CUST), Islamabad 44000, Pakistan.

出版信息

Polymers (Basel). 2021 Oct 11;13(20):3491. doi: 10.3390/polym13203491.

Abstract

This paper proposes a multi-scale analysis technique based on the micromechanics of failure (MMF) to predict and investigate the damage progression and ultimate strength at failure of laminated composites. A lamina's representative volume element (RVE) is developed to predict and calculate constituent stresses. Damages that occurred in the constituents are calculated using separate failure criteria for both fiber and matrix. Subsequently, the volume-based damage homogenization technique is utilized to prevent the localization of damage throughout the total matrix zone. The proposed multiscale analysis procedure is then used to investigate the notched and unnotched behavior of three multi-directional composite layups, [30, 60, 90, -60, 30], [0, 45, 90, -45], and [60, 0, -60], subjected to static tension and compression loading. The specimen is fabricated from unidirectionally reinforced composite (IM7/977-3). The prediction of ultimate strength at failure and equivalent stiffness are then benchmarked against the experimental test data. The comparative analysis with various failure models is also carried out to validate the proposed model. MMF demonstrated the capability to correctly predict the ultimate strength at failure for a range of multidirectional composites laminates under tensile and compressive load. The numerically predicted findings revealed a good agreement with the experimental test data. Out of the three investigated composite layups, the simulated results for the quasi-isotropic [0, 45, 90, -45] layup agreed extremely well with the experimental results with all the percentage errors within 10% of the measured failure loads.

摘要

本文提出了一种基于失效细观力学(MMF)的多尺度分析技术,用于预测和研究层合复合材料失效时的损伤进展和极限强度。开发了一个单层的代表性体积单元(RVE)来预测和计算组分应力。使用针对纤维和基体的单独失效准则来计算组分中发生的损伤。随后,利用基于体积的损伤均匀化技术来防止损伤在整个基体区域内局部化。然后,使用所提出的多尺度分析程序来研究三种多向复合材料铺层[30, 60, 90, -60, 30]、[0, 45, 90, -45]和[60, 0, -60]在静态拉伸和压缩载荷下的带缺口和无缺口行为。试件由单向增强复合材料(IM7/977-3)制成。然后将失效时的极限强度预测值和等效刚度与实验测试数据进行基准对比。还与各种失效模型进行了对比分析,以验证所提出的模型。MMF证明了能够正确预测一系列多向复合材料层压板在拉伸和压缩载荷下的失效极限强度。数值预测结果与实验测试数据显示出良好的一致性。在所研究的三种复合材料铺层中,准各向同性[0, 45, 90, -45]铺层的模拟结果与实验结果非常吻合,所有百分比误差均在测量失效载荷的10%以内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e31/8540767/073352ab7865/polymers-13-03491-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验