Extension of Puck failure criterion for mixed mode I/II fracture investigation of orthotropic materials with cracks along and perpendicular to the fiber direction, considering T-stress effects
摘要
The current study, which breaks new ground, investigates the behavior of cracked orthotropic composite materials under mixed-mode I/II in-plane loading, a combination of tension and shear within the purview of linear elastic fracture mechanics (LEFM). This paper examines the use of advanced failure criteria in analyzing the fracturing of cracked orthotropic materials. A single initial crack is considered in two orientations: parallel and perpendicular to the fibers. Puck criterion, recognized as a reliable method for investigating failure in laminated composite materials, is utilized for basic formulation. This study presents a generalized analytical formulation of the Puck criterion, referred to as the extended Puck (E-Puck) criterion. This formulation combines the singular stress field associated with a crack tip in orthotropic materials to investigate fractures in these materials. Moreover, considering the nonsingular stress components, the effect of the T-stress term in the mixed-mode criterion is examined. Also, an equivalent fracture toughness in mode I (