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A Test Specimen for Determining the Fracture Resistance of Bimaterial Interfaces
Journal of Applied Mechanics · 1989 · Vol. 56(1) · pp. 77–82
Panos G. Charalambides✉(University of California, Santa Barbara)J. A. Lund(University of California, Santa Barbara)A.G. Evans(University of California, Santa Barbara)Robert M. McMeeking(University of California, Santa Barbara)
Abstract
A test specimen capable of measuring the fracture resistance of bimaterial interfaces has been devised. A finite element approach has been used to characterize trends in the stress intensities and center point displacement with specimen dimensions, elastic properties, and crack length. The utility of the specimen has been demonstrated by conducting experiments on the model system, Al/PMMA.
Numerical methods in engineeringAdvanced ceramic materials synthesisUltrasonics and Acoustic Wave PropagationMaterials scienceDisplacement (psychology)Fracture (geology)Composite materialFinite element methodStress (linguistics)Point (geometry)Fracture toughnessFracture mechanicsStructural engineering
Funding
- University of California, Santa Barbara
- Office of Naval Research
Citations
905
FWCI
41.00
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0
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