Stavole M, Sato Martin de Almagro R, Dörlich V, Leyendecker S (2025)
Publication Type: Journal article, Original article
Publication year: 2025
Book Volume: 317
Article Number: 113407
DOI: 10.1016/j.ijsolstr.2025.113407
In this work we derive formulas to compute effective torsion, extension, bending and shear stiffness coefficients for n" role="presentation" style="display: inline-block; line-height: normal; font-size: 14.4px; font-size-adjust: none; word-spacing: normal; overflow-wrap: normal; white-space: nowrap; float: none; direction: ltr; max-width: none; max-height: none; min-width: 0px; min-height: 0px; border-width: 0px; border-style: none; position: relative;">-layered axisymmetric beams that take into account the coupling due to deformation between layers. Further, the contributions of this coupling are studied for the case of two- and three-layered circular cross-sections. Finally, we proceed to check the applicability of the results to a particular case of interest, that of unloaded endoscope shafts. For this purpose, we show the results of an experimental campaign carried out on the medical devices.
APA:
Stavole, M., Sato Martin de Almagro, R., Dörlich, V., & Leyendecker, S. (2025). On the determination of effective stiffness properties of multilayered axisymmetric beams via analytic and experimental approaches. International Journal of Solids and Structures, 317. https://doi.org/10.1016/j.ijsolstr.2025.113407
MLA:
Stavole, Martina, et al. "On the determination of effective stiffness properties of multilayered axisymmetric beams via analytic and experimental approaches." International Journal of Solids and Structures 317 (2025).
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