Fracture healing is a complex process regulated by numerous growth and adhesive factors expressed at specific stages during healing. The naturally occurring, cell surface-expressed sugar, heparan sulfate (HS), is known to bind to and potentiate the effects of many classes of growth factors, and as s
Modelling the tensile fracture behaviour of CFRP scarf repairs
β Scribed by R.D.S.G. Campilho; M.F.S.F. de Moura; A.M.G. Pinto; J.J.L. Morais; J.J.M.S. Domingues
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 660 KB
- Volume
- 40
- Category
- Article
- ISSN
- 1359-8368
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β¦ Synopsis
An experimental and numerical study concerning the tensile behaviour of adhesively-bonded carbonepoxy scarf repairs is presented, using scarf angles ranging from 2Β°to 45Β°. A mixed-mode cohesive damage model adequate for ductile adhesives was used to simulate the adhesive layer. The cohesive laws of the adhesive layer, composite interlaminar and composite intralaminar (in the transverse and fibre directions) in pure modes I and II, necessary to simulate numerically the experimental failure paths, were previously characterized using an inverse method. Validation of this methodology was accomplished in terms of repair initial stiffness, maximum load and the corresponding displacement, as well as the failure mode. A good agreement between the numerical predictions and the experiments showed that the proposed methodology can be successfully applied to joints or repairs bonded with ductile adhesives.
π SIMILAR VOLUMES
The effects of a single dose of irradiation on the biomechanical parameters of the fracture healing process were studied in a rat model. Intramedullary pinning was performed before production of a closed femoral midshaft fracture. The experimental group was exposed to 900 rad 3 days after fracture a