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On the influence of material non-linearities in geometric modeling of kink band instabilities in unidirectional fiber composites
Institution:1. Institute of Mechanics of Materials, Ruhr-Universität Bochum, D-44780, Bochum, Germany;2. Institut für Mechanik, Montanuniversität Leoben, A-8700, Leoben, Austria;3. Institute of Physics of Materials, Academy of Sciences of the Czech Republic, CZ-61662, Brno, Czech Republic;1. School of Life Sciences and Technology, Xidian University, Xi’an, Shaanxi 710071, People''s Republic of China;2. Department of Anesthesiology, The First Affiliated Hospital of Xi''an Jiaotong University, Xi''an, People''s Republic of China;3. Shanghai Key Laboratory of Psychotic Disorders, Shanghai Mental Health Center, Shanghai Jiao Tong University School of Medicine, Shanghai 200030, People''s Republic of China;4. Engineering Research Center of Molecular and Neuro Imaging, Ministry of Education, People''s Republic of China;5. Institute of Automation, Chinese Academy of Sciences Beijing, People''s Republic of China;1. Exploration and Production Research Institute, Sinopec, Beijing, 100083, China;2. Institute of Geophysical Exploration, Huabei Oilfield, Renqiu, 062552, China
Abstract:The axial compressive failure of aligned fiber composites triggered by kink band instabilities is the topic of investigation herein. Particular emphasis is put on the accurate prediction of the post-failure regime, where fiber composites are known to exhibit substantial post-failure strength. In this regard, a previous analytical model, based on geometric relationships and energy principles, is enhanced by consistently taking into account material non-linearities. Therefore, a non-linear constitutive law is introduced herein based on a newly developed exponential formulation. This non-linear constitutive law is subsequently implemented into the stress–strain response in interlaminar shearing as well as the compression response. The model enhancements are validated against published experimental data yielding excellent comparisons. Furthermore, the relevance of modeling non-linear material behavior in interlaminar dilation and bending is assessed using a bilinear constitutive law. However, implementing non-linear material behavior does not yield any improvements and can therefore be neglected.
Keywords:Fiber composites  Compressive failure  Kink banding  Non-linear constitutive law
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