On the modeling of restrained torsional warping: an analysis of two formulations

Author:

Armero F.ORCID

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,General Physics and Astronomy,General Mathematics

Reference34 articles.

1. Armero, F.: On the modeling of restrained torsional warping in prismatic elastic shafts (a full report). UCB/SEMM Report 2021/03, University of California, Berkeley, CA (2021)

2. Benscoter, S.U.: A theory of torsion bending for multi-cell beams. J. Appl. Mech. 20, 25–34 (1954)

3. Bredt, R.: Kritische bemerkungen zur drehunfselasticität. Z. Ver. Dtsch. Ing. 40(785–790), 813–817 (1896). (in German)

4. Burgoyne, C.J., Brown, E.H.: Nonuniform elastic torsion. Int. J. Mech. Sci. 36, 23–38 (1994)

5. Coulomb, C.A.: Recherches théoriques et expérimentales sur la force de torsion et sur l’élasticité des fils de métal. Mém. Acad. Sci. pp. 229–269 (1784) (in French)

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1. Buckling of Short Beams Considering Shear Warping: Application to Fiber-Reinforced Elastomeric Isolators;Journal of Engineering Mechanics;2024-01

2. A new structural model of warping torsion. II: Evaluation for a model problem;International Journal of Solids and Structures;2022-07

3. A new structural model of warping torsion. I: Formulation for prismatic elastic shafts;International Journal of Solids and Structures;2022-07

4. On the restrained torsional warping of thin‐walled elastic shafts;ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik;2022-05-14

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