Limit analysis of strut nets

Author:

Amendola Ada1ORCID,Fortunato Antonio1,Fraternali Fernando1,Mattei Ornella2,Milton Graeme W3,Seppecher Pierre4

Affiliation:

1. Department of Civil Engineering, University of Salerno, Fisciano, Italy

2. Department of Mathematics, San Francisco State University, San Francisco, CA, USA

3. Department of Mathematics, The University of Utah, Salt Lake City, UT, USA

4. Institut de Mathematiques de Toulon, Universite de Toulon, Toulon, France

Abstract

Truss structures composed of members that work exclusively in tension or in compression appear in several problems of science and engineering, e.g., in the study of the resisting mechanisms of masonry structures, as well as in the design of spider web-inspired web structures. This work generalizes previous results on the existence of cable webs that are able to support assigned sets of nodal forces under tension. We extend such a problem to the limit analysis of compression-only “strut nets” subjected to fixed and variable nodal loads. These systems provide discrete element models of masonry bodies, which lie inside the polygon/polyhedron with vertices at the points of application of the given forces (“underlying masonry structures”). It is assumed that fixed nodal forces are combined with variable forces growing proportionally to a scalar multiplier (load multiplier), and that the supporting strut net is subjected to kinematic constraints at given nodal positions.

Funder

Italian Ministry of University and Research

National Science Foundation

Publisher

SAGE Publications

Subject

Mechanics of Materials,General Materials Science,General Mathematics

Reference38 articles.

1. Limit analysis and no-tension materials

2. On the forces that cable webs under tension can support and how to design cable webs to channel stresses

3. Bouchitté G, Mattei O, Milton GW, et al. Guiding stress with cable networks and the spider web problem. SIAM News, 1 October 2020, https://sinews.siam.org/Details-Page/guiding-stress-with-cable-networks-and-the-spider-web-problem

4. The Stone Skeleton

5. Mathematics of the Masonry–Like model and Limit Analysis

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