Abstract
Due to the design of uncertainty caused by manufacturing processes and measures, that may affect composite structures, mechanical reliability analysis of a multilayer composite plate, using the finite element method, been the subject of this paper. To that end, we propose a reliability-mechanical numerical model, conditioned by Tsai-Wu failure criterion. This model was developed in two steps, first, the development of a deterministic model, afterwards, a probabilistic computation. To get to our lens, a probabilistic study was carried out to highlight the influence of design parameters on random damage to composite structures, using the Monte Carlo simulation method, which made it possible to estimate the failure P f probability of the studied structure. The results obtained show that the uncertainties loading and winding angle are the first two responsible for the composite structure failure.
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Acknowledgments
The collaboration of the research team structures and new materials laboratory Controls Tests, Measurements and Simulations with Mechanics Department DMA of the mechanical department of the FEMTO-ST Institute is much appreciated. This work was supported by the M2SC team where the Algerian side wishes to express their sincere gratitude to team leaders in experimental research and numerical simulations.
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Maizia, A., Hocine, A., Dehmous, H., Chapelle, D. (2017). Development of a Reliability-Mechanical: Numerical Model of Mechanical Behavior of a Multilayer Composite Plate. In: Boukharouba, T., Pluvinage, G., Azouaoui, K. (eds) Applied Mechanics, Behavior of Materials, and Engineering Systems. Lecture Notes in Mechanical Engineering. Springer, Cham. https://doi.org/10.1007/978-3-319-41468-3_32
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DOI: https://doi.org/10.1007/978-3-319-41468-3_32
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