Abstract
This work aims to study the fracture mechanisms of a low carbon laminated steel under different biaxial stress states employing a universal testing machine with an Arcan type device. The chosen material was an AISI/SAE 1020 steel, A specific butterfly specimen geometry was designed with the aid of finite element simulations to concentrate critical stresses at the center of its neck. The Arcan device can change the specimen's orientation regarding the machine loading axis, generating different biaxial stress states. Tests were carried out on pure tension (0°), combined stress with a predominance of shear stress (60°), and pure shear (90°). An evident deformation was observed in the microvoids generated in the specimens at 60° and 90°, orienting them in the direction of the shear stress, favoring their coalescence, and decreasing their mechanical resistance. Although no apparent difference was observed between the failure surface morphologies of the specimens loaded at 60° and 90°, an evident difference was observed concerning the sample at 0° due to the dominant presence of shear stress.
Cite
CITATION STYLE
Anduquia, J. M., Vargas Salazar, S., Ortiz, D. V., Narváez Tovar, C. A., & Rodríguez Baracaldo, R. (2022). Estudio de los mecanismos de fractura de un acero de bajo carbono ante diferentes estados de carga biaxial empleando un dispositivo tipo Arcan. Ingeniare. Revista Chilena de Ingeniería, 30(2), 279–288. https://doi.org/10.4067/s0718-33052022000200279
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