Abstraet--A Compact Mixed Mode (CMM) fracture specimen was developed for fracture toughness determination. It is capable of determining the complete range of fracture toughness under pure mode I, pure mode II and mixed mode I and II loading conditions. Finite element analysis was conducted to provid
Mixed mode fracture analysis of adhesive lap joints
โ Scribed by Gengkai Hu
- Publisher
- Elsevier Science
- Year
- 1995
- Weight
- 392 KB
- Volume
- 5
- Category
- Article
- ISSN
- 0961-9526
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โฆ Synopsis
A Cherepanov-Rice J integral is derived for Goland-Reissner type joints. It is shown that the resulting J integral is path independent under the assumption of small rotation of adherents and thin adhesive thickness. It represents the product of strain energy density at the edge of the joint and adhesive layer thickness regardless of the mechanical properties (elastic or elastoplastic) of adherents and adhesive. For long overlap elastic joints, the J integral is independent of adhesive thickness and adhesive mechanical properties, and can be estimated simply by a beam model. Load phase angles for a cohesive crack and an adhesive crack are given allowing one to determine the critical load if the corresponding toughnesses are known.
๐ SIMILAR VOLUMES
This investigation was aimed at improving the calculation of the Mode I fracture energy, G IC , of adhesive joints by incorporating the elasticity of the adhesive layer. It was also aimed at proposing ways to improve the calculation of G IC over the existing standard for the measurement of that mate