2023-12
Quasi-brittle materials like composites are notch-sensitive, and the stress concentration factor (Kt) determines their strength knock-down. To alleviate this notch sensitivity, researchers are pursuing pseudo-ductility to stimulate stress redistribution around the notches. However, how such a pseudo-ductile material reduces Kt or improves the nominal strength (Sn) in notched sub-components (centre crack, elliptical hole and open hole) is unclear. In this work, we analytically determine the Kt of typical notched specimens made of an idealised pseudo-ductile material and show its accuracy using Finite Element (FE) models. Kt increases after the specimen transitions from localised yielding to net-section yielding. Then, we elucidate the size-effect behaviour of the notched sub-components using FE models. The study reveals that the notched pseudo-ductile specimens recover higher Sn than their linear elastic counterparts, in proportion to the Kt. However, pseudo-ductility decreases the Sn for smaller specimens, and the notch shape is unimportant in this region
Article
Accepted version
peer-reviewed
English
Materials compostos; Esforç i tensió; Elements finits, Mètode dels; Composite materials; Strains and stresses; Finite element method; Mecànica de fractura; Fracture mechanics; Concentració de tensions; Stress concentration
info:eu-repo/semantics/altIdentifier/doi/10.1016/j.tafmec.2023.104120
info:eu-repo/semantics/altIdentifier/issn/0167-8442
info:eu-repo/semantics/altIdentifier/eissn/1872-7638
Reconeixement-NoComercial-SenseObraDerivada 4.0 Internacional
http://creativecommons.org/licenses/by-nc-nd/4.0