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碳纤维增强塑料的I型断裂行为:实验结果的数值模型

Mode-I Fracture Behavior of CFRPs: Numerical Model of the Experimental Results.

作者信息

Barile Claudia, Casavola Caterina, Gambino Benedetto, Mellone Alessandro, Spagnolo Marco

机构信息

Dipartimento di Meccanica, Matematica e Management, Politecnico di Bari, viale Japigia 182, 70126 Bari, Italy.

Leonardo Aircraft Spa, Zona ASI Incoronata, 81100 Foggia, Italy.

出版信息

Materials (Basel). 2019 Feb 8;12(3):513. doi: 10.3390/ma12030513.

Abstract

In the last decades, the increasing use of laminate materials, such as carbon fibre reinforced plastics, in several engineering applications has pushed researchers to deeply investigate their mechanical behavior, especially in consideration of the delamination process, which could affect their performance. The need for improving the capability of the current instruments in predicting some collapse or strength reduction due to hidden damages leads to the necessity to combine numerical models with experimental campaigns. The validation of the numerical models could give useful information about the mechanical response of the materials, providing predictive data about their lifetime. The purpose of the delamination tests is to collect reliable results by monitoring the delamination growth of the simulated in situ cracking and use them to validate the numerical models. In this work, an experimental campaign was carried out on high performance composite laminates with respect to the delamination mode I; subsequently, a numerical model representative of the experimental setup was built. The ANSYS Workbench Suite was used to simulate the delamination phenomena and modeFRONTIER was applied for the numerical/experimental calibration of the constitutive relationship on the basis of the delamination process, whose mechanism was implemented by means of the cohesive zone material (CZM) model.

摘要

在过去几十年中,诸如碳纤维增强塑料等层压材料在多个工程应用中的使用日益增加,这促使研究人员深入研究其力学行为,尤其是考虑到可能影响其性能的分层过程。由于需要提高当前仪器预测因隐藏损伤导致的某些破坏或强度降低的能力,因此有必要将数值模型与实验活动相结合。数值模型的验证可以提供有关材料力学响应的有用信息,提供有关其寿命的预测数据。分层试验的目的是通过监测模拟原位裂纹的分层扩展来收集可靠结果,并将其用于验证数值模型。在这项工作中,针对I型分层对高性能复合层压板进行了实验活动;随后,建立了代表实验装置的数值模型。使用ANSYS Workbench套件来模拟分层现象,并应用modeFRONTIER基于分层过程对本构关系进行数值/实验校准,其机理通过粘结区材料(CZM)模型实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91f4/6384958/035ef462236f/materials-12-00513-g001.jpg

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