CRACK TIP STRESS FIELDS AND FRACTURE TOUGHNESS IN ADHESIVE JOINTS

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Hauptverfasser: Cheng Yan, Yiu-Wing Mai, Lin Ye
Format: Recurso digital
Veröffentlicht: Zenodo 1999
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author Cheng Yan
Yiu-Wing Mai
Lin Ye
author_facet Cheng Yan
Yiu-Wing Mai
Lin Ye
contents To study the fracture behaviour of an adhesive joint, a thorough understanding of the crack tip stress field is essential. In this study, large deformation finite element analysis has been carried out for compact tension (CT) specimen with different bond thickness. Numerical results indicate a higher opening stress is observed in the joint with a smaller bond thickness (h) when loaded to the same applied J-integral value. Beyond the crack tip region, a self-similar stress field can be described by the normalized loading parameter J/h(o. The relationship between J and crack tip opening displacement is dependent on the bond thickness. For small bond thickness, toughness is linearly proportional to bond thickness caused by the high constraint. Beyond a critical bond thickness, the toughness decreases due to the rapid opening (blunting) of the crack tip with loading.
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publishDate 1999
publisher Zenodo
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spellingShingle CRACK TIP STRESS FIELDS AND FRACTURE TOUGHNESS IN ADHESIVE JOINTS
Cheng Yan
Yiu-Wing Mai
Lin Ye
To study the fracture behaviour of an adhesive joint, a thorough understanding of the crack tip stress field is essential. In this study, large deformation finite element analysis has been carried out for compact tension (CT) specimen with different bond thickness. Numerical results indicate a higher opening stress is observed in the joint with a smaller bond thickness (h) when loaded to the same applied J-integral value. Beyond the crack tip region, a self-similar stress field can be described by the normalized loading parameter J/h(o. The relationship between J and crack tip opening displacement is dependent on the bond thickness. For small bond thickness, toughness is linearly proportional to bond thickness caused by the high constraint. Beyond a critical bond thickness, the toughness decreases due to the rapid opening (blunting) of the crack tip with loading.
title CRACK TIP STRESS FIELDS AND FRACTURE TOUGHNESS IN ADHESIVE JOINTS
url https://doi.org/10.5281/zenodo.15419856