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1.
Philos Trans A Math Phys Eng Sci ; 372(2008): 20120029, 2014 Feb 13.
Article in English | MEDLINE | ID: mdl-24379421

ABSTRACT

A symmetry-adapted version of the Maxwell rule appropriate to periodic bar-and-joint frameworks is obtained, and is further extended to body-and-joint systems. The treatment deals with bodies and forces that are replicated in every unit cell, and uses the point group isomorphic to the factor group of the space group of the framework. Explicit expressions are found for the numbers and symmetries of detectable mechanisms and states of self-stress in terms of the numbers and symmetries of framework components. This approach allows detection and characterization of mechanisms and states of self-stress in microscopic and macroscopic materials and meta-materials. Illustrative examples are described. The notion of local isostaticity of periodic frameworks is extended to include point-group symmetry.

3.
Philos Trans A Math Phys Eng Sci ; 360(1791): 227-38, 2002 Feb 15.
Article in English | MEDLINE | ID: mdl-16214680

ABSTRACT

A simple model of deploying tree leaves is assembled in different arrangements to produce polygonal foldable membranes for use as deployable structures. One family of folding patterns exhibits a small strain mechanism, which is investigated. Variations on the basic arrangements can be used to fold membranes with a discretized curvature.


Subject(s)
Algorithms , Membranes/chemistry , Plant Leaves/chemistry , Trees/chemistry , Membranes/anatomy & histology , Models, Biological , Plant Leaves/anatomy & histology
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