This article presents a relaxed micromorphic model for the study of finite metamaterials, highlighting its accuracy in predicting mechanical behavior and wave propagation. The fitting procedure was automated to improve efficiency in material characterization, allowing exact cutoff values to be imposed and minimizing the mean square error of the asymptotes. This facilitates the design of complex structures with advanced capabilities for elastic energy control and negative refraction phenomena.
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The results obtained in this study open multiple possibilities in the field of materials engineering and structural optimization. The ability to design large-scale meta-structures with control over elastic energy will enable the development of applications in various sectors, from the construction of resilient infrastructure to the generation of smart materials with adaptive properties.
Q2BSTUDIO continues to seek to integrate the latest knowledge in the field of metamaterials and structural modeling to offer significant advances in the technology industry. Our commitment is to provide innovative solutions through the development of specialized software, data analysis, and advanced simulations that maximize the efficiency and profitability of our clients' projects.





