arXiv · 1703.03082
Printing non-Euclidean solids
Abstract
Geometrically frustrated solids with non-Euclidean reference metric are ubiquitous in biology and are becoming increasingly relevant in technological applications. Often they acquire a targeted con- figuration of incompatibility through surface accretion of mass as in tree growth or dam construction. We use the mechanics of incompatible surface growth to show that geometrical frustration develop- ing during deposition can be fine-tuned to ensure a particular behavior of the system in physiological (or working) conditions. As an illustration, we obtain an explicit 3D printing protocol for arteries, which guarantees stress uniformity under inhomogeneous loading, and for explosive plants, allowing a complete release of residual elastic energy with a single cut. Interestingly, in both cases reaching the physiological target requires the incompatibility to have a topological (global) component.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Giuseppe Zurlo, Lev Truskinovsky. 2017-04-18. Printing non-Euclidean solids. https://doi.org/10.1103/physrevlett.119.048001
Cite the original work for its findings. Save a collection to share your selection of sources.