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Analytical relationships for yield stress of five mechanical meta-biomaterials

    1. [1] Amirkabir University of Technology

      Amirkabir University of Technology

      Irán

    2. [2] Islamic Azad University

      Islamic Azad University

      Irán

    3. [3] Delft University of Technology

      Delft University of Technology

      Países Bajos

  • Localización: Mechanics based design of structures and machines, ISSN 1539-7734, Vol. 50, Nº. 10, 2022, págs. 3452-3474
  • Idioma: inglés
  • Texto completo no disponible (Saber más ...)
  • Resumen
    • In this article, five fundamental unit cells namely BCC, hexagonal packing, rhombicuboctahedron, diamond, and truncated octahedron, for which there was a lack of accurate analytical yield stress relationship in the literature, were studied analytically and numerically using the Timoshenko and Euler–Bernoulli beam theories. Two different approaches based on force or displacement methods were considered. The results of the analytical models were validated against finite element models results as well as experimental data from literature. The results demonstrated that the newly developed analytical relationships based on Timoshenko beam theory give more accurate results as compared to Euler–Bernoulli beam theory, especially in higher values of relative densities.


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