Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/7177
Title: Plastic deformation and failure mechanisms in nano-scale notched metallic glass specimens under tensile loading
Authors: Singh, Indrasen
Keywords: Failure (mechanical);Glass;Metallic glass;Metals;Molecular dynamics;Nanotechnology;Plastic deformation;Shear bands;Shear flow;Tensile stress;Chemical compositions;Deformation and failure mechanism;Deformation and failures;Deformation response;Failure mechanism;Material length scale;Notched specimens;Plastic flow localization;Finite element method
Issue Date: 2018
Publisher: Elsevier Ltd
Citation: Dutta, T., Chauniyal, A., Singh, I., Narasimhan, R., Thamburaja, P., & Ramamurty, U. (2018). Plastic deformation and failure mechanisms in nano-scale notched metallic glass specimens under tensile loading. Journal of the Mechanics and Physics of Solids, 111, 393-413. doi:10.1016/j.jmps.2017.11.011
Abstract: In this work, numerical simulations using molecular dynamics and non-local plasticity based finite element analysis are carried out on tensile loading of nano-scale double edge notched metallic glass specimens. The effect of acuteness of notches as well as the metallic glass chemical composition or internal material length scale on the plastic deformation response of the specimens are studied. Both MD and FE simulations, in spite of the fundamental differences in their nature, indicate near-identical deformation features. Results show two distinct transitions in the notch tip deformation behavior as the acuity is increased, first from single shear band dominant plastic flow localization to ligament necking, and then to double shear banding in notches that are very sharp. Specimens with moderately blunt notches and composition showing wider shear bands or higher material length scale characterizing the interaction stress associated with flow defects display profuse plastic deformation and failure by ligament necking. These results are rationalized from the role of the interaction stress and development of the notch root plastic zones. © 2017 Elsevier Ltd
URI: https://doi.org/10.1016/j.jmps.2017.11.011
https://dspace.iiti.ac.in/handle/123456789/7177
ISSN: 0022-5096
Type of Material: Journal Article
Appears in Collections:Department of Mechanical Engineering

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