Scaffolding Generation using a 3D Physarum Polycephalum Simulation
arXiv:2212.11527 · doi:10.1145/3559400.3565590
Abstract
In this demo, we present a novel technique for approximating topologically optimal scaffoldings for 3D printed objects using a Monte Carlo algorithm based on the foraging behavior of the Physarum polycephalum slime mold. As a case study, we have created a biologically inspired bicycle helmet using this technique that is designed to be effective in resisting impacts. We have created a prototype of this helmet and propose further studies that measure the effectiveness and validity of the design.
Presented in the demo session at the ACM Symposium on Computational Fabrication 2022 on October 27, 2022 in Seattle, WA
References in corpus (3)
- Infill Optimization for Additive Manufacturing -- Approaching Bone-like Porous Structures
- Monte Carlo Physarum Machine: Characteristics of Pattern Formation in Continuous Stochastic Transport Networks
- Polyphorm: Structural Analysis of Cosmological Datasets via Interactive Physarum Polycephalum Visualization