NASA NTRS · 20040031632
Physically Based Failure Criteria for Transverse Matrix Cracking
Abstract
A criterion for matrix failure of laminated composite plies in transverse tension and in-plane shear is developed by examining the mechanics of transverse matrix crack growth. Matrix cracks are assumed to initiate from manufacturing defects and can propagate within planes parallel to the fiber direction and normal to the ply mid-plane. Fracture mechanics models of cracks in unidirectional laminates, embedded plies and outer plies are developed to determine the onset and direction of propagation for unstable crack growth. The models for each ply configuration relate ply thickness and ply toughness to the corresponding in-situ ply strength. Calculated results for several materials are shown to correlate well with experimental results.
Keep this discovery
Explore connections, maps & timelines
Davila, Carlos G., Camanho, Pedro P.. 2003-11-20. Physically Based Failure Criteria for Transverse Matrix Cracking. https://ntrs.nasa.gov/citations/20040031632
Cite the original work for its findings. Save a collection to share your selection of sources.